[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"_public_publisher_byId_23043d2d-03dd-47ed-95b1-b96d35ccfde5":3,"_public_publication_all{\"sortAscending\":false,\"sortField\":\"updateTime\",\"page\":0,\"size\":10,\"facet\":true,\"searchKey\":\"publisherId:23043d2d-03dd-47ed-95b1-b96d35ccfde5,\"}":156},{"code":4,"data":5,"meta":18},"SUCCESS",{"id":6,"createTime":7,"updateTime":8,"relativeEntities":9,"slug":10,"properties":11,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":20,"manageAffiliations":33,"indexDatabases":49,"url":18,"thumbnailPath":18,"statistic":85,"gsStatistic":18,"type":155,"analyzePriority":18},"23043d2d-03dd-47ed-95b1-b96d35ccfde5","2024-04-18T02:10:24.704+00:00","2025-11-21T09:59:34.318+00:00",[],"Production-Engineering",{"issn":12,"title":14},{"VOID":13},"18637353",{"VOID":15},"Production Engineering","PUBLISHER","PENDING",null,0,[21,27],{"id":22,"createTime":18,"updateTime":18,"relativeEntities":23,"label":24,"description":26,"parentId":18,"standard":18,"scholarHubFieldId":18},"a2a5d1c5-cd41-43f2-8cbf-db0e5429c29e",[],{"EN":25},"Industrial and Manufacturing Engineering",{},{"id":28,"createTime":18,"updateTime":18,"relativeEntities":29,"label":30,"description":32,"parentId":18,"standard":18,"scholarHubFieldId":18},"5587dea8-ebb6-4a42-8493-b6dd63ea819a",[],{"EN":31},"Mechanical Engineering",{},[34,42],{"id":35,"createTime":18,"updateTime":18,"relativeEntities":36,"slug":18,"properties":37,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":40,"statistic":18},"6b6d67d8-1887-4ca8-86c5-a38f66f10928",[],{"title":38},{"EN":39},"Springer Verlag",[41],"9a7c7208-b28a-42c2-a634-5a7f90eee3ab",{"id":43,"createTime":18,"updateTime":18,"relativeEntities":44,"slug":18,"properties":45,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":48,"statistic":18},"869fc292-62ea-48f4-960e-51fea58b02ba",[],{"title":46},{"EN":47},"Springer Heidelberg",[41],[50,68],{"id":51,"indexDatabase":52,"url":62,"indexYears":63,"academicFieldIds":64,"indexDatabaseRanking":67},"dab9bad9-7567-487b-8160-379e83b2ddae",{"id":53,"createTime":18,"updateTime":18,"relativeEntities":54,"label":55,"description":57,"key":59,"publicationTags":60,"standard":18},"3c7051d4-eb7d-4c57-a56b-36fc74c5d1e9",[],{"EN":56,"VI":56},"Scopus - Elsevier",{"EN":56,"VI":58},"Cơ sở dữ liệu Scopus thuộc Elsevier","scopus",[61],"SCOPUS","https:\u002F\u002Fwww.scopus.com\u002Fsourceid\u002F15300154820","1977,2008-2025",[65,66],"0fcba9a1-2569-4944-a7a4-cc9afab4b4fe","9d2ac5e3-41a0-4e3f-9001-acfb87e489bc","NONE",{"id":69,"indexDatabase":70,"url":82,"indexYears":18,"academicFieldIds":83,"indexDatabaseRanking":18},"38da8e2c-7a39-447e-9e3b-b9c826c2e5ab",{"id":71,"createTime":18,"updateTime":18,"relativeEntities":72,"label":73,"description":75,"key":78,"publicationTags":79,"standard":18},"88bab0f7-443b-476c-a72a-7fa5222da393",[],{"EN":74,"VI":74},"ISI\u002FESCI  - Emerging Sources Citation Index",{"EN":76,"VI":77},"ESCI database","Cơ sở dữ liệu ESCI","esci",[80,81],"ESCI","ISI","https:\u002F\u002Fmjl.clarivate.com\u002Fsearch-results?issn=0944-6524",[84],"897f98c7-d126-490f-8d24-d0fb2e4f8579",{"impactFactor":19,"impactFactorByYear":86,"i10Index":98,"i10IndexLast5Year":99,"totalPublication":100,"totalPublicationByYear":101,"totalCitation":116,"totalCitationByYear":117,"totalCitationPerPublication":134,"totalCitationPerPublicationByYear":135,"hindexLast5Year":154,"hindex":154},{"2012":87,"2013":88,"2014":89,"2015":90,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":89,"2022":96,"2023":97},0.51,0.41,0.4,0.1,0.2,0.45,0.13,0.22,0.29,0.34,0.23,76,10,873,{"2007":102,"2008":103,"2009":104,"2010":105,"2011":106,"2012":107,"2013":102,"2014":108,"2015":109,"2016":110,"2017":102,"2018":111,"2019":112,"2020":106,"2021":107,"2022":113,"2023":114,"2024":115},58,44,36,52,46,57,43,51,34,61,50,56,39,20,2946,{"2007":118,"2008":119,"2009":120,"2010":121,"2011":122,"2012":123,"2013":124,"2014":125,"2015":126,"2016":109,"2017":127,"2018":128,"2019":129,"2020":130,"2021":106,"2022":131,"2023":132,"2024":133},158,287,181,862,244,196,147,38,364,116,85,65,83,15,7,1,3.37,{"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":142,"2014":143,"2015":144,"2016":145,"2017":146,"2018":147,"2019":148,"2020":149,"2021":150,"2022":151,"2023":152,"2024":153},2.72,6.52,5.03,16.58,5.3,3.44,2.53,0.88,7.14,1.5,2,1.39,1.3,1.8,0.81,0.27,0.18,0.05,25,"JOURNAL",{"meta":157,"data":159},{"total":158},"877",[160,300,613,718,1006,1138,1300,1405,1531,1694],{"id":161,"createTime":162,"updateTime":163,"relativeEntities":164,"slug":165,"properties":166,"entityType":177,"verifyStatus":178,"verifyTime":179,"verifyNote":180,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":181,"fullTextUrl":18,"authors":182,"publicationType":241,"publisherRelationship":242,"citationCount":291,"citationInfo":292,"publishDate":295,"publishYear":293,"citationAnalyzeStatus":296,"lastCitationAnalyze":297,"indexDatabases":298,"openAccess":18,"references":18,"isForceReanalyzing":299},"0c85235e-5c19-4811-80e1-28bf210f6a27","2024-01-04T14:28:15.404+00:00","2026-08-16T13:36:14.286+00:00",[],"Modeling-machine-side-influences-on-the-Z-Folding-process-of-battery-cells",{"abstract":167,"title":169,"gsPaper":171,"references":173,"doi":175},{"EN":168},"The modeling of stacking machines for battery cell production offers potentials for quantifying interdependencies and thus optimizing development and commissioning processes against the background of a targeted efficient production. This paper presents a methodology to develop a model for quantifying machine-side influences using the example of a Z-Folding machine. The components and aspects of the machine to be modeled and their level of detail are systematically derived. Subsequently, it is shown how to parameterize the derived aspects. The components and aspects of the machine are modeled and connected through a multi-physics simulation. This makes it possible to predict the effects on the separator material to be processed depending on the selected setting parameters on the machine. This opens up potentials, for example, to identify optimal setting parameters in a risk-free and model-based manner, depending on the materials to be processed. As a result, material waste can be reduced by eliminating previous \"trial and error\" approaches.",{"EN":170},"Modeling machine-side influences on the Z-Folding process of battery cells",{"VOID":172},"[\"16406618414827158233\"]",{"VOID":174},"Stampatori D, Raimondi PP, Noussan M (2020) Li-ion batteries: a review of a key technology for transport decarbonization. Energies 13(10):2638. https:\u002F\u002Fdoi.org\u002F10.3390\u002Fen13102638\nZhao J, Burke AF (2022) Electric vehicle batteries: status and perspectives of data-driven diagnosis and prognosis. Batteries 8(10):142. https:\u002F\u002Fdoi.org\u002F10.3390\u002Fbatteries8100142\nDing Y, Cano ZP, Yu A, Lu J, Chen Z (2019) Automotive Li-ion batteries: current status and future perspectives. Electrochem Energy Rev 2(1):1–28. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs41918-018-0022-z\nMichaelis S et al (2023) Roadmap Batterie-Produktionsmittel 2030: update 2023. https:\u002F\u002Fwww.vdma.org\u002Fbatterieproduktionsmittel\nAydemir M, Mooy R, Müller A, Glodde A, Dietrich F (2021) High throughput feeding of battery electrode sheets: accuracy vs. throughput vs. electrode-damage. https:\u002F\u002Fdoi.org\u002F10.14279\u002FDEPOSITONCE-12438\nWeinmann HW (2022) Integration des Vereinzelungs- und Stapelbildungsprozesses in ein flexibel und kontinuierlich arbeitendes Anlagenmodul für die Li-Ionen Batteriezellfertigung. Dissertation, Karlsruhe Institute of Technology, Karlsruhe\nZhu G-L et al (2021) Dependence of separator thickness on Li-Ion battery energy density. J Electrochem Soc 168(11):110545. https:\u002F\u002Fdoi.org\u002F10.1149\u002F1945-7111\u002Fac39df\nWessel J, Turetskyy A, Cerdas F, Herrmann C (2021) Integrated material-energy-quality assessment for lithium-ion battery cell manufacturing. Procedia CIRP 98:388–393. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.procir.2021.01.122\nHusseini K, Schmidgruber N, Henschel S, Mayer D, Fleischer J (2023) Model-based optimization of web tension control for the flexible cell stack assembly of lithium-ion battery cells. Energy Technol. https:\u002F\u002Fdoi.org\u002F10.1002\u002Fente.202200679\nSchmidt O, Thomitzek M, Röder F, Thiede S, Herrmann C, Krewer U (2020) Modeling the impact of manufacturing uncertainties on lithium-ion batteries. J Electrochem Soc 167(6):60501. https:\u002F\u002Fdoi.org\u002F10.1149\u002F1945-7111\u002Fab798a\nThomitzek M, Schmidt O, Röder F, Krewer U, Herrmann C, Thiede S (2018) Simulating process-product interdependencies in battery production systems. Procedia CIRP 72:346–351. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.procir.2018.03.056\nSchönemann M, Bockholt H, Thiede S, Kwade A, Herrmann C (2019) Multiscale simulation approach for production systems. Int J Adv Manuf Technol 102(5–8):1373–1390. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs00170-018-3054-y\nAsylbekov E, Trunk R, Krause MJ, Nirschl H (2021) Microscale discrete element method simulation of the carbon black aggregate fracture behavior in a simple shear flow. Energy Technol 9(6):2000850. https:\u002F\u002Fdoi.org\u002F10.1002\u002Fente.202000850\nHagemeister J, Günter FJ, Rinner T, Zhu F, Papst A, Daub R (2022) Numerical models of the electrolyte filling process of lithium-ion batteries to accelerate and improve the process and cell design. Batteries 8(10):159. https:\u002F\u002Fdoi.org\u002F10.3390\u002Fbatteries8100159\nHoffmann A, Spiegel S, Heckmann T, Scharfer P, Schabel W (2023) CFD model of slot die coating for lithium-ion battery electrodes in 2D and 3D with load balanced dynamic mesh refinement enabled with a local-slip boundary condition in OpenFOAM. J Coat Technol Res 20(1):3–14. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs11998-022-00660-8\nNgandjong AC et al (2021) Investigating electrode calendering and its impact on electrochemical performance by means of a new discrete element method model: towards a digital twin of Li-Ion battery manufacturing. J Power Sources 485:229320. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.jpowsour.2020.229320\nSchreiner D, Klinger A, Reinhart G (2020) Modeling of the calendering process for lithium-ion batteries with DEM simulation. Procedia CIRP 93:149–155. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.procir.2020.05.158\nWang A, Kadam S, Li H, Shi S, Qi Y (2018) Review on modeling of the anode solid electrolyte interphase (SEI) for lithium-ion batteries. npj Comput Mater. https:\u002F\u002Fdoi.org\u002F10.1038\u002Fs41524-018-0064-0\nvon Boeselager C et al (2023) Model-based design and experimental evaluation of a high-throughput electrode feeding and stacking process. Energy Technol. https:\u002F\u002Fdoi.org\u002F10.1002\u002Fente.202200687\nMüller A et al (2021) Simulation based approach for high-throughput stacking processes in battery production. Processes 9(11):1993. https:\u002F\u002Fdoi.org\u002F10.3390\u002Fpr9111993\nMayer D, Fleischer J (2021) Concept for modelling the influence of electrode corrugation after calendering on stacking accuracy in battery cell production. Procedia CIRP 104:744–749. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.procir.2021.11.125\nHusseini K, Schmidgruber N, Weinmann HW, Maibaum K, Ruhland J, Fleischer J (2022) Development of a digital twin for improved ramp-up processes in the context of Li-ion-battery-cell-stack-formation. Procedia CIRP 106:27–32. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.procir.2022.02.150\nEppinger SD (2012) Design structure matrix methods and applications. MIT Press, Cambridge\nGalle A (2007) Regelungstechnische Untersuchung der Bedruckstoffförderung in Rollendruckmaschinen. Dissertationsschrift, TU Chemnitz, Chemnitz\nBranca C, Pagilla PR, Reid KN (2013) Governing equations for web tension and web velocity in the presence of nonideal rollers. J Dyn Syst Meas Control. https:\u002F\u002Fdoi.org\u002F10.1115\u002F1.4007974",{"VOID":176},"10.1007\u002Fs11740-023-01248-w","PUBLICATION","VERIFIED","2024-05-16T22:32:07.024+00:00","Auto Verify","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs11740-023-01248-w",[183,199,212,225],{"id":184,"sortIndex":19,"researcher":18,"roles":185,"affiliations":187,"properties":196},"d2809db5-eb46-4402-9a1d-a9a52971444f",[186],"AUTHOR",[188],{"id":189,"sortIndex":19,"affiliation":190,"properties":18},"8c49a669-f38f-4635-8646-24292e4cbb1f",{"id":189,"createTime":18,"updateTime":18,"relativeEntities":191,"slug":18,"properties":192,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":195,"statistic":18},[],{"title":193},{"VI":194},"Institute of Production Science, Karlsruhe Institute of Technology (KIT), Karlsruhe, Germany",[],{"title":197},{"VI":198},"Kamal Husseini",{"id":200,"sortIndex":133,"researcher":18,"roles":201,"affiliations":202,"properties":209},"98be051d-4067-45c2-bf8b-1dc6d8e086ea",[186],[203],{"id":189,"sortIndex":19,"affiliation":204,"properties":18},{"id":189,"createTime":18,"updateTime":18,"relativeEntities":205,"slug":18,"properties":206,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":208,"statistic":18},[],{"title":207},{"VI":194},[],{"title":210},{"VI":211},"Levin Boschert",{"id":213,"sortIndex":146,"researcher":18,"roles":214,"affiliations":215,"properties":222},"1516030a-a6c8-4e5c-a59d-cabdfe2bc76c",[186],[216],{"id":189,"sortIndex":19,"affiliation":217,"properties":18},{"id":189,"createTime":18,"updateTime":18,"relativeEntities":218,"slug":18,"properties":219,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":221,"statistic":18},[],{"title":220},{"VI":194},[],{"title":223},{"VI":224},"Sebastian Schabel",{"id":226,"sortIndex":227,"researcher":18,"roles":228,"affiliations":229,"properties":236},"3742613b-6632-47e0-89fe-f930afa20a37",3,[186],[230],{"id":189,"sortIndex":19,"affiliation":231,"properties":18},{"id":189,"createTime":18,"updateTime":18,"relativeEntities":232,"slug":18,"properties":233,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":235,"statistic":18},[],{"title":234},{"VI":194},[],{"title":237,"gsAuthor":239},{"VI":238},"Jürgen Fleischer",{"VOID":240},"[\"G8cQRUMAAAAJ\"]","ARTICLE",{"url":181,"publisher":243,"properties":288},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":244,"slug":10,"properties":245,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":248,"manageAffiliations":257,"indexDatabases":268,"url":18,"thumbnailPath":18,"statistic":283,"gsStatistic":18,"type":155,"analyzePriority":18},[],{"issn":246,"title":247},{"VOID":13},{"VOID":15},[249,253],{"id":22,"createTime":18,"updateTime":18,"relativeEntities":250,"label":251,"description":252,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":25},{},{"id":28,"createTime":18,"updateTime":18,"relativeEntities":254,"label":255,"description":256,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":31},{},[258,263],{"id":35,"createTime":18,"updateTime":18,"relativeEntities":259,"slug":18,"properties":260,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":262,"statistic":18},[],{"title":261},{"EN":39},[41],{"id":43,"createTime":18,"updateTime":18,"relativeEntities":264,"slug":18,"properties":265,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":267,"statistic":18},[],{"title":266},{"EN":47},[41],[269,276],{"id":51,"indexDatabase":270,"url":62,"indexYears":63,"academicFieldIds":275,"indexDatabaseRanking":67},{"id":53,"createTime":18,"updateTime":18,"relativeEntities":271,"label":272,"description":273,"key":59,"publicationTags":274,"standard":18},[],{"EN":56,"VI":56},{"EN":56,"VI":58},[61],[65,66],{"id":69,"indexDatabase":277,"url":82,"indexYears":18,"academicFieldIds":282,"indexDatabaseRanking":18},{"id":71,"createTime":18,"updateTime":18,"relativeEntities":278,"label":279,"description":280,"key":78,"publicationTags":281,"standard":18},[],{"EN":74,"VI":74},{"EN":76,"VI":77},[80,81],[84],{"impactFactor":19,"impactFactorByYear":284,"i10Index":98,"i10IndexLast5Year":99,"totalPublication":100,"totalPublicationByYear":285,"totalCitation":116,"totalCitationByYear":286,"totalCitationPerPublication":134,"totalCitationPerPublicationByYear":287,"hindexLast5Year":154,"hindex":154},{"2012":87,"2013":88,"2014":89,"2015":90,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":89,"2022":96,"2023":97},{"2007":102,"2008":103,"2009":104,"2010":105,"2011":106,"2012":107,"2013":102,"2014":108,"2015":109,"2016":110,"2017":102,"2018":111,"2019":112,"2020":106,"2021":107,"2022":113,"2023":114,"2024":115},{"2007":118,"2008":119,"2009":120,"2010":121,"2011":122,"2012":123,"2013":124,"2014":125,"2015":126,"2016":109,"2017":127,"2018":128,"2019":129,"2020":130,"2021":106,"2022":131,"2023":132,"2024":133},{"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":142,"2014":143,"2015":144,"2016":145,"2017":146,"2018":147,"2019":148,"2020":149,"2021":150,"2022":151,"2023":152,"2024":153},{"pages":289},{"VOID":290},"1-9",4,{"total":291,"publishYear":293,"statisticByYear":294},2024,{},"2024-01-04","ERROR_IN_ANALYZE_CITATION","2026-08-16T13:36:14.284+00:00",[80,61],false,{"id":301,"createTime":302,"updateTime":303,"relativeEntities":304,"slug":305,"properties":306,"entityType":177,"verifyStatus":178,"verifyTime":317,"verifyNote":180,"languages":318,"translateLanguages":18,"viewCount":19,"primaryUrl":320,"fullTextUrl":18,"authors":321,"publicationType":241,"publisherRelationship":356,"citationCount":402,"citationInfo":403,"publishDate":406,"publishYear":404,"citationAnalyzeStatus":407,"lastCitationAnalyze":303,"indexDatabases":408,"openAccess":18,"references":409,"isForceReanalyzing":299},"1deb1887-dbeb-46ee-80c8-650597c5052b","2024-04-15T22:39:37.021+00:00","2026-07-28T12:16:52.411+00:00",[],"Evaluation-of-interconnected-production-sites-taking-into-account-multidimensional-uncertainties",{"openalex":307,"mag":309,"title":311,"gsPaper":313,"doi":315},{"VOID":308},"W1965301696",{"VOID":310},"1965301696",{"EN":312},"Evaluation of interconnected production sites taking into account multidimensional uncertainties",{"VOID":314},"[\"2494507814793961099\"]",{"VOID":316},"10.1007\u002Fs11740-012-0409-3","2024-05-11T22:25:34.899+00:00",[319],"EN","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs11740-012-0409-3",[322,339],{"id":323,"sortIndex":19,"researcher":18,"roles":324,"affiliations":325,"properties":334},"a1e6a065-b693-4b80-82d3-4a015744d892",[],[326],{"id":327,"sortIndex":19,"affiliation":328,"properties":18},"fcd0ff55-f4eb-4554-96e3-27f20326842f",{"id":327,"createTime":18,"updateTime":18,"relativeEntities":329,"slug":18,"properties":330,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":333,"statistic":18},[],{"title":331},{"VI":332},"Institute for Machine Tools and Industrial Management (iwb), Technische Universität München, Boltzmannstraße 15, 85748 Garching, Germany",[],{"title":335,"openalex":337},{"EN":336},"Pascal Krebs",{"VOID":338},"A5007794651",{"id":340,"sortIndex":133,"researcher":18,"roles":341,"affiliations":342,"properties":349},"41ead2bf-da6e-489c-ba55-fb84b19f3365",[],[343],{"id":327,"sortIndex":19,"affiliation":344,"properties":18},{"id":327,"createTime":18,"updateTime":18,"relativeEntities":345,"slug":18,"properties":346,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":348,"statistic":18},[],{"title":347},{"VI":332},[],{"orcid":350,"title":352,"openalex":354},{"VOID":351},"https:\u002F\u002Forcid.org\u002F0000-0003-4439-047X",{"EN":353},"Gunther Reinhart",{"VOID":355},"A5035948604",{"url":18,"publisher":357,"properties":18},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":358,"slug":10,"properties":359,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":362,"manageAffiliations":371,"indexDatabases":382,"url":18,"thumbnailPath":18,"statistic":397,"gsStatistic":18,"type":155,"analyzePriority":18},[],{"issn":360,"title":361},{"VOID":13},{"VOID":15},[363,367],{"id":22,"createTime":18,"updateTime":18,"relativeEntities":364,"label":365,"description":366,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":25},{},{"id":28,"createTime":18,"updateTime":18,"relativeEntities":368,"label":369,"description":370,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":31},{},[372,377],{"id":35,"createTime":18,"updateTime":18,"relativeEntities":373,"slug":18,"properties":374,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":376,"statistic":18},[],{"title":375},{"EN":39},[41],{"id":43,"createTime":18,"updateTime":18,"relativeEntities":378,"slug":18,"properties":379,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":381,"statistic":18},[],{"title":380},{"EN":47},[41],[383,390],{"id":51,"indexDatabase":384,"url":62,"indexYears":63,"academicFieldIds":389,"indexDatabaseRanking":67},{"id":53,"createTime":18,"updateTime":18,"relativeEntities":385,"label":386,"description":387,"key":59,"publicationTags":388,"standard":18},[],{"EN":56,"VI":56},{"EN":56,"VI":58},[61],[65,66],{"id":69,"indexDatabase":391,"url":82,"indexYears":18,"academicFieldIds":396,"indexDatabaseRanking":18},{"id":71,"createTime":18,"updateTime":18,"relativeEntities":392,"label":393,"description":394,"key":78,"publicationTags":395,"standard":18},[],{"EN":74,"VI":74},{"EN":76,"VI":77},[80,81],[84],{"impactFactor":19,"impactFactorByYear":398,"i10Index":98,"i10IndexLast5Year":99,"totalPublication":100,"totalPublicationByYear":399,"totalCitation":116,"totalCitationByYear":400,"totalCitationPerPublication":134,"totalCitationPerPublicationByYear":401,"hindexLast5Year":154,"hindex":154},{"2012":87,"2013":88,"2014":89,"2015":90,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":89,"2022":96,"2023":97},{"2007":102,"2008":103,"2009":104,"2010":105,"2011":106,"2012":107,"2013":102,"2014":108,"2015":109,"2016":110,"2017":102,"2018":111,"2019":112,"2020":106,"2021":107,"2022":113,"2023":114,"2024":115},{"2007":118,"2008":119,"2009":120,"2010":121,"2011":122,"2012":123,"2013":124,"2014":125,"2015":126,"2016":109,"2017":127,"2018":128,"2019":129,"2020":130,"2021":106,"2022":131,"2023":132,"2024":133},{"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":142,"2014":143,"2015":144,"2016":145,"2017":146,"2018":147,"2019":148,"2020":149,"2021":150,"2022":151,"2023":152,"2024":153},11,{"total":402,"publishYear":404,"statisticByYear":405},2012,{"2015":146,"2016":133,"2018":133,"2019":133,"2020":133,"2022":133,"2023":146,"2024":133},"2012-12-01","DONE_ANALYZE_CITATION",[80,61],[410,414,417,421,424,428,431,434,437,440,444,448,451,455,458,462,466,470,473,477,480,483,486,489,492,495,498,502,506,509,512,516,519,523,527,530,534,538,542,546,549,553,557,561,565,568,571,574,577,580,584,588,591,595,599,603,606,609],{"id":18,"text":411,"url":18,"identifiers":412},"Abele E, Reinhart G (2011) Zukunft der Produktion: Herausforderungen, Forschungsfelder, Chancen. Hanser, Munich",{"doi":413},"10.3139\u002F9783446428058",{"id":18,"text":415,"url":18,"identifiers":416},"Reithofer N (2010) Mobilität neu gedacht. In: Tagungsband Münchener Kolloquium—Innovationen für die Produktion 2010. Utz, Munich, pp 19–30",{},{"id":18,"text":418,"url":18,"identifiers":419},"Milberg J, Möller N (2008) Valuation of changeable production systems. Prod Eng 2(4):417–424",{"doi":420},"10.1007\u002Fs11740-008-0133-1",{"id":18,"text":422,"url":18,"identifiers":423},"Kohler K (2008) Global supply chain design: Konzeption und Implementierung eines multikriteriellen Optimierungsmodells für die Gestaltung globaler Wertschöpfungsaktivitäten. Dissertation, CfSM Centrum für Supply Management, Estenfeld",{},{"id":18,"text":425,"url":18,"identifiers":426},"Sihn W, Hillbrand C, F Meizer (2010) Development of a Simulation Model for Multimodal, Cross-Company Logistics Networks. In: Dangelmaier W, Blecken A, Delius R, Klöpfer S (eds) Advanced manufacturing and sustainable logistics. Springer, Berlin, pp 26–36",{"doi":427},"10.1007\u002F978-3-642-12494-5_3",{"id":18,"text":429,"url":18,"identifiers":430},"Kinkel S, Maloca, S (2009) Produktionsverlagerungen und Rückverlagerungen in Zeiten der Krise. Mitteilungen aus der ISI Erhebung, Ausgabe 52, Karlsruhe",{},{"id":18,"text":432,"url":18,"identifiers":433},"Meyer T (2006) Globale Produktionsnetzwerke: Ein Modell zur kostenoptimierten Standortwahl. Dissertation, Shaker, Aachen",{},{"id":18,"text":435,"url":18,"identifiers":436},"Canada JR, Sullivan WG (1989) Economic and multiattribute evaluation of advanced manufacturing systems. Prentice Hall, New Jersey",{},{"id":18,"text":438,"url":18,"identifiers":439},"Dunning JH, Lundan SM (2008) Multinational enterprises and the global economy. Elgar, Cheltenham",{},{"id":18,"text":441,"url":18,"identifiers":442},"Klibi W, Martel A, Guitouni A (2010) The design of robust value creating supply chain networks: a critical review. Eur J Oper Res 203(2):283–293",{"doi":443},"10.1016\u002Fj.ejor.2009.06.011",{"id":18,"text":445,"url":18,"identifiers":446},"Lanza G, Ude J (2010) Muldimensional evaluation of value added networks. CRIP Ann Manuf Technol 59:489–492",{"doi":447},"10.1016\u002Fj.cirp.2010.03.080",{"id":18,"text":449,"url":18,"identifiers":450},"Albrecht F, Hueske B (2010) Systemdenken in der globalen Produktionsnetzwerkplanung: Beherrschung der Komplexität bei Standortentscheidungen durch einen systemorientierten Ansatz. ZwF Zeitschrift für wirtschaftlichen Fabrikbetrieb 100(4):264–270",{},{"id":18,"text":452,"url":18,"identifiers":453},"Snyder LV (2006) Facility location under uncertainty: a review. IIE Trans 38(7):547–564",{"doi":454},"10.1080\u002F07408170500216480",{"id":18,"text":456,"url":18,"identifiers":457},"Abele E, Kluge J, Näher U (2006) Handbuch globale Produktion. Hanser, Munich",{},{"id":18,"text":459,"url":18,"identifiers":460},"Vos B, Akkermans H (1996) Capturing the dynamics of facility allocation. Int J Oper Res Prod Manag 16(11):57–70",{"doi":461},"10.1108\u002F01443579610131456",{"id":18,"text":463,"url":18,"identifiers":464},"Chan FTS, Chan HK, Chan MH, Humphreys PK (2006) An integrated fuzzy approach for the selection of manufacturing technologies. Int J Adv Manuf Technol 27(7):747–758",{"doi":465},"10.1007\u002Fs00170-004-2246-9",{"id":18,"text":467,"url":18,"identifiers":468},"Denkena B, Blümel P, Lorenzen L (2007) Total benefits of ownership: Verfahren zur Bewertung des Unternehmensnutzens von Investitionsalternativen. wt Werkstattstechnik—online 97(7\u002F8):560–566",{"doi":469},"10.37544\u002F1436-4980-2007-7-8-560",{"id":18,"text":471,"url":18,"identifiers":472},"Grundig C (2006) Fabrikplanung: Planungssystematik—Methoden—Anwendungen, 2nd edn. Hanser, Munich",{},{"id":18,"text":474,"url":18,"identifiers":475},"Abele E, Liebeck T, Merz N (2008) Globale Produktion – eine Frage des Standorts?: Wie Unternehmen systematisch die Struktur ihres Produktionsnetzwerks gestalten können. wt Werkstattstechnik—online 98(1\u002F2):92–97",{"doi":476},"10.37544\u002F1436-4980-2008-1-2-92",{"id":18,"text":478,"url":18,"identifiers":479},"Berndt R, Altobelli CF (1998) Springers Handbuch der Betriebswirtschaftslehre. Springer, Berlin",{},{"id":18,"text":481,"url":18,"identifiers":482},"Hummel B (1997) Internationale Standortentscheidung: Einflußfaktoren, informatorische Fundierung und Unterstützung durch computergestützte Informationssysteme. Haufe, Freiburg",{},{"id":18,"text":484,"url":18,"identifiers":485},"Rosenkranz F, Missler-Behr M (2005) Unternehmensrisiken erkennen und managen: Einführung in die quantitative Planung. Springer, Berlin",{},{"id":18,"text":487,"url":18,"identifiers":488},"Brieke M (2009) Erweiterte Wirtschaftlichkeitsrechnung in der Fabrikplanung (EWR). Dissertation, Leibniz Universität Hannover",{},{"id":18,"text":490,"url":18,"identifiers":491},"Zäh MF, Möller N, Sudhoff W (2005) A framework for the valuation of Changeable Manufacturing Systems. CIRP 3rd international conference on reconfigurable manufacturing systems, Ann Arbor",{},{"id":18,"text":493,"url":18,"identifiers":494},"Zäh MF, Sudhoff W, Möller N (2005) Quantitative modeling of mobile production scenarios. 38th CIRP international seminar on manufacturing systems, Florianopolis",{},{"id":18,"text":496,"url":18,"identifiers":497},"Merchiers A (2008) Bewertung globaler Standortstrukturalternativen im Maschinenbau. Dissertation, Apprimus-Verl., Aachen",{},{"id":18,"text":499,"url":18,"identifiers":500},"Liang GS, Wang MJ (1991) A fuzzy multicriteria decision-making method for facility site selection. Int J Prod Res 29(11):2313–2330",{"doi":501},"10.1080\u002F00207549108948085",{"id":18,"text":503,"url":18,"identifiers":504},"Chou S, Chang Y, Shen C (2008) A fuzzy simple additive weighting system under group decision-making for facility location selection with objective\u002Fsubjective attributes. Eur J Oper Res 189(1):132–145",{"doi":505},"10.1016\u002Fj.ejor.2007.05.006",{"id":18,"text":507,"url":18,"identifiers":508},"Erben RF (2000) Fuzzy-logic-basiertes Risikomanagement: Anwendungsmöglichkeiten der Theorie unscharfer Mengen im Rahmen des Risikomanagements von Industriebetrieben unter besonderer Berücksichtigung der Beurteilung von Länderrisiken. Dissertation, Shaker, Aachen",{},{"id":18,"text":510,"url":18,"identifiers":511},"Oehmen J (2009) Managing supply chain risks: the example of successful sourcing from China. Dissertation, ETH Zurich",{},{"id":18,"text":513,"url":18,"identifiers":514},"Kuo RJ, Chiand SC, Kao SS (2002) A decision support system for selecting convenience store location through integration of fuzzy AHP and artificial neural network. Comput Ind 47(2):199–214",{"doi":515},"10.1016\u002FS0166-3615(01)00147-6",{"id":18,"text":517,"url":18,"identifiers":518},"Heger CL (2007) Bewertung der Wandlungsfähigkeit von Fabrikobjekten. Dissertation, Leibniz Universität Hannover",{},{"id":18,"text":520,"url":18,"identifiers":521},"Nyhuis P, Heinen T, Brieke M (2007) Adequate and economic factory transformability and the effects on logistical performance. Int J Flex Manuf Syst 19(3):286–307",{"doi":522},"10.1007\u002Fs10696-007-9027-3",{"id":18,"text":524,"url":18,"identifiers":525},"Buhmann M, Schön M (2009) Dynamische Standortbewertung—Denken in Szenarien und Optionen. In: Kinkel S (ed) Erfolgsfaktor Standortplanung. In- und ausländische Standorte richtig bewerten. Springer, Berlin, pp 279–302",{"doi":526},"10.1007\u002F978-3-540-88471-2_19",{"id":18,"text":528,"url":18,"identifiers":529},"Kinkel S, Zanker C (2007) Globale Produktionsstrategien in der Automobilzulieferindustrie: Erfolgsmuster und zukunftsorientierte Methoden zur Standortbewertung. Springer, Berlin",{},{"id":18,"text":531,"url":18,"identifiers":532},"Yong D (2006) Plant location selection based on fuzzy TOPSIS. Int J Adv Manuf Technol 28(7\u002F8):839–844",{"doi":533},"10.1007\u002Fs00170-004-2436-5",{"id":18,"text":535,"url":18,"identifiers":536},"Chu T (2002) Facility location selection using fuzzy topsis under group decisions. Int J Uncertain Fuzziness Knowl Based Syst 10(6):687–701",{"doi":537},"10.1142\u002FS0218488502001739",{"id":18,"text":539,"url":18,"identifiers":540},"Rimpau C, Reinhart G (2010) Knowledge-based risk evaluation during the offer calculation of customised products. Prod Eng 4:515–524",{"doi":541},"10.1007\u002Fs11740-010-0231-8",{"id":18,"text":543,"url":18,"identifiers":544},"Bosch K (1996) Großes Lehrbuch der Statistik. Oldenbourg, Munich",{"doi":545},"10.1515\u002F9783486788600",{"id":18,"text":547,"url":18,"identifiers":548},"Smirnow NW, Dunin-Barkowski IW (1963) Mathematische Statistik in der Technik: Kurzer Lehrgang. VEB Deutscher Verlag der Wissenschaften, Berlin",{},{"id":18,"text":550,"url":18,"identifiers":551},"Cottin C, Döhler S (2009) Risikoanalyse: Modellierung, Beurteilung und Management von Risiken mit Praxisbeispielen. Vieweg+Teubner\u002FGWV Fachverlage GmbH, Wiesbaden",{"doi":552},"10.1007\u002F978-3-8348-9591-2",{"id":18,"text":554,"url":18,"identifiers":555},"Guiffrida AL, Nagi R (1998) Fuzzy set theory applications in production management research: a literature survey. J Intell Manuf 9(1):39–56",{"doi":556},"10.1023\u002FA:1008847308326",{"id":18,"text":558,"url":18,"identifiers":559},"Wong BK, Lai VS (2011) A survey of the application of fuzzy set theory in production and operations management: 1998–2009. Int J Prod Econ 129:157–168",{"doi":560},"10.1016\u002Fj.ijpe.2010.09.013",{"id":18,"text":562,"url":18,"identifiers":563},"Zimmermann HJ (1991) Fuzzy set theory—and its applications. Kluwer, Boston",{"doi":564},"10.1007\u002F978-94-015-7949-0",{"id":18,"text":566,"url":18,"identifiers":567},"Wang L (1997) A course in fuzzy systems and control. Prentice Hall, Upper Saddle River",{},{"id":18,"text":569,"url":18,"identifiers":570},"Diepold KJ, Lohmann B (2010) Transient probabilistic recurrent fuzzy systems. In: IEEE (ed) International conference on systems, Istanbul, pp 3529–3536",{},{"id":18,"text":572,"url":18,"identifiers":573},"Fabrycky WJ, Blanchard BS (1991) Life-cycle cost and economic analysis. Prentice Hall international series in industrial and systems engineering. Prentice Hall, Englewood Cliffs",{},{"id":18,"text":575,"url":18,"identifiers":576},"Backhaus K, Erichson B, Plinke W, Weiber R (2006) Multivariate Analysemethoden: Eine anwendungsorientierte Einführung. Springer, Berlin",{},{"id":18,"text":578,"url":18,"identifiers":579},"Charnes JM (2007) Financial modeling with crystal ball and excel. Wiley finance series. Wiley, Hoboken",{},{"id":18,"text":581,"url":18,"identifiers":582},"Buckley J, Eslami E (2002) An introduction to fuzzy logic and fuzzy sets: with 14 tables. Physica-Verl, Heidelberg",{"doi":583},"10.1007\u002F978-3-7908-1799-7",{"id":18,"text":585,"url":18,"identifiers":586},"Zadeh LA (1965) Fuzzy sets. Inf Control 8:338–353",{"doi":587},"10.1016\u002FS0019-9958(65)90241-X",{"id":18,"text":589,"url":18,"identifiers":590},"Traeger DH (1993) Einführung in die Fuzzy-Logik. Teubner, Stuttgart",{},{"id":18,"text":592,"url":18,"identifiers":593},"Di Gesù V, Pal SK, Petrosino A (2009) Fuzzy logic and applications. Springer, Berlin",{"doi":594},"10.1007\u002F978-3-642-02282-1",{"id":18,"text":596,"url":18,"identifiers":597},"Reinhart G, Krebs P, Haas M, Zäh MF (2008) Monetäre Bewertung von Produktionssystemen: Ein Ansatz zur Integration von qualitativen Einflussfaktoren in die monetäre Bewertung unter Unsicherheit. ZwF Zeitschrift für wirtschaftlichen Fabrikbetrieb 103(12):845–850",{"doi":598},"10.3139\u002F104.101370",{"id":18,"text":600,"url":18,"identifiers":601},"Reinhart G, Krebs P, Zaeh MF (2009) Fuzzy Logic-based Integration of Qualitative Uncertainties into Monetary Factory-Evaluations. In: IEE (ed) Seventh IEEE international conference on control and automation, Christchurch, pp 385–391",{"doi":602},"10.1109\u002FICCA.2009.5410328",{"id":18,"text":604,"url":18,"identifiers":605},"Reinhart G, Krebs P, Zaeh MF (2009) Holistic Risk Evaluation for Global producing Companies. In: Zaeh et al (eds) 3rd International conference on changeable, agile, reconfigurable and virtual production (CARV) 2009. Utz, Munich, pp 951–960",{},{"id":18,"text":607,"url":18,"identifiers":608},"Korves B, Krebs P (2008) Planung und Bewertung von Flexibilität in Fabrikplanungsprojekten bei der Siemens AG. In: Zäh MF et al (eds) Tagungsband Münchener Kolloquium—Innovationen für die Produktion 2008. Utz, Munich, pp 57–67",{},{"id":18,"text":610,"url":18,"identifiers":611},"Reinhart G, Schindler S, Krebs P (2011) Strategic evaluation of manufacturing technologies. In: Hesselbach J, Herrmann C (eds) Glocalized solutions for sustainability in manufacturing, proceedings of the 18th CIRP international conference on life cycle engineering, Technische Universität Braunschweig. Springer, Berlin, pp 179–184",{"doi":612},"10.1007\u002F978-3-642-19692-8_31",{"id":614,"createTime":615,"updateTime":616,"relativeEntities":617,"slug":618,"properties":619,"entityType":177,"verifyStatus":178,"verifyTime":630,"verifyNote":180,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":631,"fullTextUrl":18,"authors":632,"publicationType":241,"publisherRelationship":661,"citationCount":19,"citationInfo":712,"publishDate":715,"publishYear":713,"citationAnalyzeStatus":407,"lastCitationAnalyze":716,"indexDatabases":717,"openAccess":18,"references":18,"isForceReanalyzing":299},"dc7789c0-59f0-42af-8140-b44f118bfa0f","2023-12-13T15:59:42.427+00:00","2026-07-26T17:44:06.614+00:00",[],"The-implementation-of-a-sketch-based-virtual-product-development",{"abstract":620,"title":622,"gsPaper":624,"references":626,"doi":628},{"EN":621},"Within the product development process, working in virtual environments is generally applied. Thus, the digital product model in its different stages is an essential prerequisite for the virtual modeling and simulation of manufacturing processes. Product development starts with conceptual design including the concepts for shape and function. The conceptual designers work on fuzzy product data applied to perception modeling and shape creation. For some time now, there has been a strong demand to define creative human problem solving in conceptual design as a task of virtual product development and to assist the process simultaneously through the use of appropriate digital models and virtual methods. This paper reports on R&D results concerned with integration of the process of conceptual design based on traditional aids, such as freehand paper sketches, in virtual environments. Until now, it has not been possible to work iteratively with both freehand sketches and digital product models. This paper describes how to interpret product descriptions in freehand sketches and to transfer them to digital three-dimensional models, e.g. in order to visualize, calculate and evaluate shapes to the development of computer-aided design (CAD) models. The methods combine an image-based modeling strategy with conventional CAD modeling strategies.",{"EN":623},"The implementation of a sketch-based virtual product development",{"VOID":625},"[\"16118480164060199343\"]",{"VOID":627},"Company P, Piquer A, Contero M, Naya F (2005) A survey on geometrical reconstruction as a core technology to sketch-based modelling. Comput Graph 29:892–904\nRoth-Koch S (2000) Generating CAD models from sketches. Kluwer, IFIP TC5 WG5.2 workshop on geometric modeling: from geometric modeling to shape modeling, pp 153–164\nRoth-Koch S (2007) Object contours in virtual conceptual sketches—modeling of perception. Int J Comput Appl Technol 30(3):157–162\nGrimstead IJ, Martin R (1995) Creating solid models from single 2D sketches.In: Proceedings of the 3rd ACM symposium on solid modelling and applications, pp 323–337\nLipson H, Shpitalni M (1996) Optimization-based reconstruction of a 3D object from a single freehand line drawing. Comput Aid Des 28(8):651–663\nFarrugia P, Borg JC, Camilleri K, Giannini F, Yan X (2005) Extracting 3D shape models and related life knowledge from paper-based sketches. Int J Comput Appl Technol 23(2):120–137\nLiao S, Wang X, Lu J (2002) An incremental Bayesian approach to sketch recognition. In: Proceedings of the 4th international conference on machine learning and cybernetics, Guanzhou\nVarley PAC, Martin R, Suzuki H (2005) Frontal geometry from sketches of engineering objects: is line labelling necessary? Comput Aid Des 37(12):1285–1307\nSapidis N, Kyratzi S, Azariadis Ph (2005) Improved computational tools for concept development based on sketches and advanced CAD technologies. Comput Aid Des Appl 2(6):707–716\nAkeo M, Hashimoto H, Kobayashi T, Shibusawa T (1994) Computer graphics system for reproducing three-dimensional shape from idea sketch. In: Proceedings of the Eurographics, pp 477–488\nZeleznik RC, Herndon KP, Hughes F (1996) SKETCH: an interface for sketching 3D scenes. Proc SIGGRAPH 96:163–170\nKamiya J, Aoyama H (2002) Free form modeling method based on silhouette and boundary lines. In: Proceedings of the 6th international conference on information visualization, pp 130–134\nJiang X, Bunke H (1997) Dreidimensionales Computersehen–Gewinnung und Analyse von Tiefenwerten. Springer, NY\nSaund E (2003) Finding perceptually closed paths in sketches and drawings. IEEE Trans Pattern Anal Machine Intell 25(4):475–491\nRoth-Koch S (2008) Creative shape interpretation in paper scribbles. In: Proceedings of the geometric modeling & imaging: modern techniques and applications. London, pp 69–74\nRoth-Koch S, Westkaemper E (2008) From the paper sketch to the virtual sketch: creative interpretation of sketches via active contours. In: Proceedings of the 13th international conference on geometry and graphics, Dresden\nCh Xu, Prince JL (1998) Generalized gradient vector flow external forces for active contours. Signal Proc 71:131–139\nMcInerney T, Terzopoulos D (2000) T-snakes: topological adaptive snakes. Med Image Anal 4:73–91\nTerzopoulos D (1984) Multiresolution computation of visible-surface representations. PhD dissertation, Department of Electrical Engineering & Computer Sciences, MIT\nLiu Y, Tang K, Joneja A (2005) Sketch-based free-form shape modelling with a fast and stable numerical engine. Comput Graph 29:771–786",{"VOID":629},"10.1007\u002Fs11740-010-0222-9","2024-06-26T23:56:20.834+00:00","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs11740-010-0222-9",[633,648],{"id":634,"sortIndex":19,"researcher":18,"roles":635,"affiliations":636,"properties":645},"9ab77ab6-0994-4dea-83e6-7325828d7634",[186],[637],{"id":638,"sortIndex":19,"affiliation":639,"properties":18},"53c15067-e6fd-469b-9472-4ea6659929d2",{"id":638,"createTime":18,"updateTime":18,"relativeEntities":640,"slug":18,"properties":641,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":644,"statistic":18},[],{"title":642},{"VI":643},"Fraunhofer Institute for Manufacturing Engineering and Automation IPA, Stuttgart, Germany",[],{"title":646},{"VI":647},"Sabine Roth-Koch",{"id":649,"sortIndex":133,"researcher":18,"roles":650,"affiliations":651,"properties":658},"2d1be7ce-3862-48cf-8bd5-13ad56ff09fc",[186],[652],{"id":638,"sortIndex":19,"affiliation":653,"properties":18},{"id":638,"createTime":18,"updateTime":18,"relativeEntities":654,"slug":18,"properties":655,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":657,"statistic":18},[],{"title":656},{"VI":643},[],{"title":659},{"VI":660},"Engelbert Westkaemper",{"url":631,"publisher":662,"properties":707},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":663,"slug":10,"properties":664,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":667,"manageAffiliations":676,"indexDatabases":687,"url":18,"thumbnailPath":18,"statistic":702,"gsStatistic":18,"type":155,"analyzePriority":18},[],{"issn":665,"title":666},{"VOID":13},{"VOID":15},[668,672],{"id":22,"createTime":18,"updateTime":18,"relativeEntities":669,"label":670,"description":671,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":25},{},{"id":28,"createTime":18,"updateTime":18,"relativeEntities":673,"label":674,"description":675,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":31},{},[677,682],{"id":35,"createTime":18,"updateTime":18,"relativeEntities":678,"slug":18,"properties":679,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":681,"statistic":18},[],{"title":680},{"EN":39},[41],{"id":43,"createTime":18,"updateTime":18,"relativeEntities":683,"slug":18,"properties":684,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":686,"statistic":18},[],{"title":685},{"EN":47},[41],[688,695],{"id":51,"indexDatabase":689,"url":62,"indexYears":63,"academicFieldIds":694,"indexDatabaseRanking":67},{"id":53,"createTime":18,"updateTime":18,"relativeEntities":690,"label":691,"description":692,"key":59,"publicationTags":693,"standard":18},[],{"EN":56,"VI":56},{"EN":56,"VI":58},[61],[65,66],{"id":69,"indexDatabase":696,"url":82,"indexYears":18,"academicFieldIds":701,"indexDatabaseRanking":18},{"id":71,"createTime":18,"updateTime":18,"relativeEntities":697,"label":698,"description":699,"key":78,"publicationTags":700,"standard":18},[],{"EN":74,"VI":74},{"EN":76,"VI":77},[80,81],[84],{"impactFactor":19,"impactFactorByYear":703,"i10Index":98,"i10IndexLast5Year":99,"totalPublication":100,"totalPublicationByYear":704,"totalCitation":116,"totalCitationByYear":705,"totalCitationPerPublication":134,"totalCitationPerPublicationByYear":706,"hindexLast5Year":154,"hindex":154},{"2012":87,"2013":88,"2014":89,"2015":90,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":89,"2022":96,"2023":97},{"2007":102,"2008":103,"2009":104,"2010":105,"2011":106,"2012":107,"2013":102,"2014":108,"2015":109,"2016":110,"2017":102,"2018":111,"2019":112,"2020":106,"2021":107,"2022":113,"2023":114,"2024":115},{"2007":118,"2008":119,"2009":120,"2010":121,"2011":122,"2012":123,"2013":124,"2014":125,"2015":126,"2016":109,"2017":127,"2018":128,"2019":129,"2020":130,"2021":106,"2022":131,"2023":132,"2024":133},{"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":142,"2014":143,"2015":144,"2016":145,"2017":146,"2018":147,"2019":148,"2020":149,"2021":150,"2022":151,"2023":152,"2024":153},{"pages":708,"volume":710},{"VOID":709},"175-183",{"VOID":711},"4",{"total":19,"publishYear":713,"statisticByYear":714},2010,{},"2010-04-06","2026-07-26T17:44:06.613+00:00",[80,61],{"id":719,"createTime":720,"updateTime":721,"relativeEntities":722,"slug":723,"properties":724,"entityType":177,"verifyStatus":178,"verifyTime":733,"verifyNote":180,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":734,"fullTextUrl":18,"authors":735,"publicationType":241,"publisherRelationship":798,"citationCount":849,"citationInfo":850,"publishDate":857,"publishYear":851,"citationAnalyzeStatus":407,"lastCitationAnalyze":858,"indexDatabases":859,"openAccess":18,"references":860,"isForceReanalyzing":299},"0d5aa4a4-4088-411a-803d-eac51d852219","2023-12-28T02:46:48.761+00:00","2026-07-23T22:45:38.816+00:00",[],"EOQ-inventory-model-for-perishable-products-under-uncertainty",{"abstract":725,"title":727,"gsPaper":729,"doi":731},{"EN":726},"Perishable products require accurate inventory control models as their effect on operations management can be critical. This assumption is particularly relevant in highly uncertain and dynamic markets, as for the ones generated by the pandemic era. This paper presents an inventory control model for perishable items with a demand rate variable over time, and dependent on the inventory rate. The model also considers the potential for backlogging and lost sales. Imperfect product quality is included, and deterioration is modelled as a time-dependent variable. The framework envisages the possibility to define variables affected by uncertainty in terms of probability distribution functions, which are then jointly managed via a Monte Carlo simulation. This paper is intended to provide an analytical formulation to deal with uncertainty and time-dependent inventory functions to be used for a variety of perishable products. The formulation is designed to support decision-making for the identification of the optimal order quantity. A numerical example exemplifies the outcomes of the paper and provides a cost-based sensitivity analysis to understand the role of main parameters.",{"EN":728},"EOQ inventory model for perishable products under uncertainty",{"VOID":730},"[\"10488656658756363315\"]",{"VOID":732},"10.1007\u002Fs11740-020-00986-5","2024-05-01T12:25:56.381+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs11740-020-00986-5",[736,753,768,783],{"id":737,"sortIndex":19,"researcher":18,"roles":738,"affiliations":739,"properties":748},"43a8fc51-36a4-4931-ac91-72d76af46025",[186],[740],{"id":741,"sortIndex":19,"affiliation":742,"properties":18},"1629e0d3-ed62-4de1-a806-3334e5869bfb",{"id":741,"createTime":18,"updateTime":18,"relativeEntities":743,"slug":18,"properties":744,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":747,"statistic":18},[],{"title":745},{"VI":746},"Department of Mechanical and Aerospace Engineering, Sapienza University of Rome, Rome, Italy",[],{"title":749,"gsAuthor":751},{"VI":750},"R. Patriarca",{"VOID":752},"[\"rPguw9UAAAAJ\"]",{"id":754,"sortIndex":133,"researcher":18,"roles":755,"affiliations":756,"properties":763},"da6286bd-a76c-4c80-aad3-bd058094f588",[186],[757],{"id":741,"sortIndex":19,"affiliation":758,"properties":18},{"id":741,"createTime":18,"updateTime":18,"relativeEntities":759,"slug":18,"properties":760,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":762,"statistic":18},[],{"title":761},{"VI":746},[],{"title":764,"gsAuthor":766},{"VI":765},"G. Di Gravio",{"VOID":767},"[\"HJhaapQAAAAJ\"]",{"id":769,"sortIndex":146,"researcher":18,"roles":770,"affiliations":771,"properties":778},"4291a702-dab4-499e-859e-d1410f7c651a",[186],[772],{"id":741,"sortIndex":19,"affiliation":773,"properties":18},{"id":741,"createTime":18,"updateTime":18,"relativeEntities":774,"slug":18,"properties":775,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":777,"statistic":18},[],{"title":776},{"VI":746},[],{"title":779,"gsAuthor":781},{"VI":780},"F. Costantino",{"VOID":782},"[\"Rb7yoDEAAAAJ\"]",{"id":784,"sortIndex":227,"researcher":18,"roles":785,"affiliations":786,"properties":793},"717c3874-f84e-40d0-9ce0-3e591fa365e1",[186],[787],{"id":741,"sortIndex":19,"affiliation":788,"properties":18},{"id":741,"createTime":18,"updateTime":18,"relativeEntities":789,"slug":18,"properties":790,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":792,"statistic":18},[],{"title":791},{"VI":746},[],{"title":794,"gsAuthor":796},{"VI":795},"M. Tronci",{"VOID":797},"[\"FqP63AsAAAAJ\"]",{"url":734,"publisher":799,"properties":844},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":800,"slug":10,"properties":801,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":804,"manageAffiliations":813,"indexDatabases":824,"url":18,"thumbnailPath":18,"statistic":839,"gsStatistic":18,"type":155,"analyzePriority":18},[],{"issn":802,"title":803},{"VOID":13},{"VOID":15},[805,809],{"id":22,"createTime":18,"updateTime":18,"relativeEntities":806,"label":807,"description":808,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":25},{},{"id":28,"createTime":18,"updateTime":18,"relativeEntities":810,"label":811,"description":812,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":31},{},[814,819],{"id":35,"createTime":18,"updateTime":18,"relativeEntities":815,"slug":18,"properties":816,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":818,"statistic":18},[],{"title":817},{"EN":39},[41],{"id":43,"createTime":18,"updateTime":18,"relativeEntities":820,"slug":18,"properties":821,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":823,"statistic":18},[],{"title":822},{"EN":47},[41],[825,832],{"id":51,"indexDatabase":826,"url":62,"indexYears":63,"academicFieldIds":831,"indexDatabaseRanking":67},{"id":53,"createTime":18,"updateTime":18,"relativeEntities":827,"label":828,"description":829,"key":59,"publicationTags":830,"standard":18},[],{"EN":56,"VI":56},{"EN":56,"VI":58},[61],[65,66],{"id":69,"indexDatabase":833,"url":82,"indexYears":18,"academicFieldIds":838,"indexDatabaseRanking":18},{"id":71,"createTime":18,"updateTime":18,"relativeEntities":834,"label":835,"description":836,"key":78,"publicationTags":837,"standard":18},[],{"EN":74,"VI":74},{"EN":76,"VI":77},[80,81],[84],{"impactFactor":19,"impactFactorByYear":840,"i10Index":98,"i10IndexLast5Year":99,"totalPublication":100,"totalPublicationByYear":841,"totalCitation":116,"totalCitationByYear":842,"totalCitationPerPublication":134,"totalCitationPerPublicationByYear":843,"hindexLast5Year":154,"hindex":154},{"2012":87,"2013":88,"2014":89,"2015":90,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":89,"2022":96,"2023":97},{"2007":102,"2008":103,"2009":104,"2010":105,"2011":106,"2012":107,"2013":102,"2014":108,"2015":109,"2016":110,"2017":102,"2018":111,"2019":112,"2020":106,"2021":107,"2022":113,"2023":114,"2024":115},{"2007":118,"2008":119,"2009":120,"2010":121,"2011":122,"2012":123,"2013":124,"2014":125,"2015":126,"2016":109,"2017":127,"2018":128,"2019":129,"2020":130,"2021":106,"2022":131,"2023":132,"2024":133},{"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":142,"2014":143,"2015":144,"2016":145,"2017":146,"2018":147,"2019":148,"2020":149,"2021":150,"2022":151,"2023":152,"2024":153},{"pages":845,"volume":847},{"VOID":846},"601-612",{"VOID":848},"14",64,{"total":849,"publishYear":851,"statisticByYear":852},2020,{"2021":291,"2022":853,"2023":854,"2024":855,"2025":856,"2026":99},9,8,17,16,"2020-10-12","2026-07-23T22:45:38.815+00:00",[80,61],[861,868,875,881,888,891,898,904,907,914,921,928,935,942,945,951,954,960,966,973,979,986,993,1000],{"id":18,"text":862,"url":863,"identifiers":864},"Osteryoung JS, Nosari E, McCarty DE, Reinhart WJ (1986) Use of the EOQ model for inventory analysis. Prod Invent Manag 27:39–46. https:\u002F\u002Fdoi.org\u002F10.5555\u002F15262.15268","https:\u002F\u002Fci.nii.ac.jp\u002Fnaid\u002F80003082136\u002F",{"mag":865,"openalex":866,"doi":867},"64361868","W64361868","10.5555\u002F15262.15268",{"id":18,"text":869,"url":870,"identifiers":871},"Salameh MK, Jaber MY (2000) Economic production quantity model for items with imperfect quality. Int J Prod Econ 64:59–64. https:\u002F\u002Fdoi.org\u002F10.1016\u002FS0925-5273(99)00044-4","https:\u002F\u002Fdoi.org\u002F10.1016\u002Fs0925-5273(99)00044-4",{"mag":872,"openalex":873,"doi":874},"1975850127","W1975850127","10.1016\u002Fs0925-5273(99)00044-4",{"id":876,"text":877,"url":878,"identifiers":879},"4c979379-6d89-47f0-8557-0d571e4a0a35","Moussawi-Haidar L, Salameh M, Nasr W (2014) Effect of deterioration on the instantaneous replenishment model with imperfect quality items. Appl Math Model 38:5956–5966. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.apm.2014.05.003","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0307904X1400256X",{"doi":880},"10.1016\u002Fj.apm.2014.05.003",{"id":18,"text":882,"url":883,"identifiers":884},"Tripathi RP, Uniyal AK (2015) Economic order quantity model for deteriorating items with time-dependent demand rate under time varying shortages. Int J Math Oper Res 7:706–719. https:\u002F\u002Fdoi.org\u002F10.1504\u002FIJMOR.2015.072278","https:\u002F\u002Fdoi.org\u002F10.1504\u002Fijmor.2015.072278",{"mag":885,"openalex":886,"doi":887},"2296076103","W2296076103","10.1504\u002Fijmor.2015.072278",{"id":18,"text":889,"url":18,"identifiers":890},"Karthikeyan K, Santhi G (2015) An inventory model for constant deteriorating items with cubic demand and salvage value. Int J Appl Eng Res 10:3723–3728",{},{"id":18,"text":892,"url":893,"identifiers":894},"Khurana D, Chaudhary RR (2016) Optimal pricing and ordering policy for deteriorating items with price and stock dependent demand and partial backlogging. Uncertain Supply Chain Manag 4:307–318. https:\u002F\u002Fdoi.org\u002F10.5267\u002Fj.uscm.2016.3.004","https:\u002F\u002Fdoi.org\u002F10.5267\u002Fj.uscm.2016.3.004",{"mag":895,"openalex":896,"doi":897},"2421903896","W2421903896","10.5267\u002Fj.uscm.2016.3.004",{"id":18,"text":899,"url":900,"identifiers":901},"Mahapatra GS, Adak S, Mandal TK, Pal S (2017) Inventory model for deteriorating items with time and reliability dependent demand and partial backorder. Int J Oper Res 29:344–359. https:\u002F\u002Fdoi.org\u002F10.1504\u002FIJOR.2017.084340","https:\u002F\u002Fdoi.org\u002F10.1504\u002Fijor.2017.084340",{"openalex":902,"doi":903},"W4229820424","10.1504\u002Fijor.2017.084340",{"id":18,"text":905,"url":18,"identifiers":906},"Kumar P (2019) Inventory optimization model for quadratic increasing holding cost and linearly increasing deterministic demand. Int J Recent Technol Eng 7:1999–2004",{},{"id":18,"text":908,"url":909,"identifiers":910},"Tripathi RP (2019) Innovation of economic order quantity (EOQ) model for deteriorating items with time-linked quadratic demand under non-decreasing shortages. Int J Appl Comput Math 5:1–13. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs40819-019-0708-x","https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs40819-019-0708-x",{"mag":911,"openalex":912,"doi":913},"2966745714","W2966745714","10.1007\u002Fs40819-019-0708-x",{"id":18,"text":915,"url":916,"identifiers":917},"Shaikh AA, Khan MAA, Panda GC, Konstantaras I (2019) Price discount facility in an EOQ model for deteriorating items with stock-dependent demand and partial backlogging. Int Trans Oper Res 26:1365–1395. https:\u002F\u002Fdoi.org\u002F10.1111\u002Fitor.12632","https:\u002F\u002Fdoi.org\u002F10.1111\u002Fitor.12632",{"mag":918,"openalex":919,"doi":920},"2911780193","W2911780193","10.1111\u002Fitor.12632",{"id":18,"text":922,"url":923,"identifiers":924},"Ahmad B, Benkherouf L (2018) Economic-order-type inventory models for non-instantaneous deteriorating items and backlogging. RAIRO Oper Res 52:895–901. https:\u002F\u002Fdoi.org\u002F10.1051\u002Fro\u002F2018010","https:\u002F\u002Fdoi.org\u002F10.1051\u002Fro\u002F2018010",{"mag":925,"openalex":926,"doi":927},"2793885878","W2793885878","10.1051\u002Fro\u002F2018010",{"id":18,"text":929,"url":930,"identifiers":931},"Tat R, Taleizadeh AA, Esmaeili M (2015) Developing economic order quantity model for non-instantaneous deteriorating items in vendor-managed inventory (VMI) system. Int J Syst Sci 46:1257–1268. https:\u002F\u002Fdoi.org\u002F10.1080\u002F00207721.2013.815827","https:\u002F\u002Fdoi.org\u002F10.1080\u002F00207721.2013.815827",{"mag":932,"openalex":933,"doi":934},"2025792590","W2025792590","10.1080\u002F00207721.2013.815827",{"id":18,"text":936,"url":937,"identifiers":938},"Palanivel M, Uthayakumar R (2015) Finite horizon EOQ model for non-instantaneous deteriorating items with price and advertisement dependent demand and partial backlogging under inflation. Int J Syst Sci 46:1762–1773. https:\u002F\u002Fdoi.org\u002F10.1080\u002F00207721.2013.835001","https:\u002F\u002Fdoi.org\u002F10.1080\u002F00207721.2013.835001",{"mag":939,"openalex":940,"doi":941},"2075701436","W2075701436","10.1080\u002F00207721.2013.835001",{"id":18,"text":943,"url":18,"identifiers":944},"Mishra PJ, Singh T, Pattanayak H (2016) An EOQ inventory model for deteriorating items with linear demand, salvage value and partial backlogging. Int J Appl Eng Res 11:6479–6484",{},{"id":946,"text":947,"url":948,"identifiers":949},"bebc127c-eba1-48e9-a9ca-2ee7dbbb9076","Singh T, Mishra PJ, Pattanayak H (2017) An optimal policy for deteriorating items with time-proportional deterioration rate and constant and time-dependent linear demand rate. J Ind Eng Int 13:455–463. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs40092-017-0198-6","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs40092-017-0198-6",{"doi":950},"10.1007\u002Fs40092-017-0198-6",{"id":18,"text":952,"url":18,"identifiers":953},"Rajoria YK, Saini S, Singh SR (2015) EOQ model for decaying items with power demand, partial backlogging and inflation. Int J Appl Eng Res 10:22861–22874",{},{"id":18,"text":955,"url":956,"identifiers":957},"Sharma S, Singh S, Singh SR (2018) An inventory model for deteriorating items with expiry date and time varying holding cost. Int J Procure Manag 11:650–666. https:\u002F\u002Fdoi.org\u002F10.1504\u002FIJPM.2018.094357","https:\u002F\u002Fdoi.org\u002F10.1504\u002Fijpm.2018.094357",{"openalex":958,"doi":959},"W4239495276","10.1504\u002Fijpm.2018.094357",{"id":961,"text":962,"url":963,"identifiers":964},"b1fc86ac-5e39-461a-989c-c53ca0219078","Pervin M, Roy SK, Weber G-W (2018) Analysis of inventory control model with shortage under time-dependent demand and time-varying holding cost including stochastic deterioration. Ann Oper Res 260:437–460. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs10479-016-2355-5","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs10479-016-2355-5",{"doi":965},"10.1007\u002Fs10479-016-2355-5",{"id":18,"text":967,"url":968,"identifiers":969},"Sanni SS, Chukwu WIE (2016) An inventory model with three-parameter weibull deterioration, quadratic demand rate and shortages. Am J Math Manag Sci 35:159–170. https:\u002F\u002Fdoi.org\u002F10.1080\u002F01966324.2015.1126697","https:\u002F\u002Fdoi.org\u002F10.1080\u002F01966324.2015.1126697",{"mag":970,"openalex":971,"doi":972},"2323771715","W2323771715","10.1080\u002F01966324.2015.1126697",{"id":18,"text":974,"url":975,"identifiers":976},"Singh T, Mishra PJ, Pattanayak H (2018) An EOQ inventory model for deteriorating items with time-dependent deterioration rate, ramp-type demand rate and shortages. Int J Math Oper Res 12:423–437. https:\u002F\u002Fdoi.org\u002F10.1504\u002FIJMOR.2018.092103","https:\u002F\u002Fdoi.org\u002F10.1504\u002Fijmor.2018.092103",{"openalex":977,"doi":978},"W4244569036","10.1504\u002Fijmor.2018.092103",{"id":18,"text":980,"url":981,"identifiers":982},"Palanivel M, Uthayakumar R (2016) Finite horizon EOQ model for non-instantaneous deteriorating items with probabilistic deterioration and partial backlogging under inflation. Int J Math Oper Res 8:449–476. https:\u002F\u002Fdoi.org\u002F10.1504\u002FIJMOR.2016.076784","https:\u002F\u002FEconPapers.repec.org\u002FRePEc:ids:ijmore:v:8:y:2016:i:4:p:449-476",{"mag":983,"openalex":984,"doi":985},"2577475428","W2577475428","10.1504\u002FIJMOR.2016.076784",{"id":18,"text":987,"url":988,"identifiers":989},"Mahata P, Mahata GC, De SK (2020) An economic order quantity model under two-level partial trade credit for time varying deteriorating items. Int J Syst Sci Oper Logist 7:1–17. https:\u002F\u002Fdoi.org\u002F10.1080\u002F23302674.2018.1473526","https:\u002F\u002Fdoi.org\u002F10.1080\u002F23302674.2018.1473526",{"mag":990,"openalex":991,"doi":992},"2803844603","W2803844603","10.1080\u002F23302674.2018.1473526",{"id":18,"text":994,"url":995,"identifiers":996},"Jaggi CK, Goel SK, Mittal M (2011) Economic order quantity model for deteriorating items with imperfect quality and permissible delay on payment. Int J Ind Eng Comput 2:237–248. https:\u002F\u002Fdoi.org\u002F10.5267\u002Fj.ijiec.2010.07.003","https:\u002F\u002Fdoi.org\u002F10.5267\u002Fj.ijiec.2010.07.003",{"mag":997,"openalex":998,"doi":999},"2127244180","W2127244180","10.5267\u002Fj.ijiec.2010.07.003",{"id":1001,"text":1002,"url":1003,"identifiers":1004},"c4b9c9a7-365b-485f-b707-992b75e124f1","Di Gravio G, Mancini M, Patriarca R, Costantino F (2015) Overall safety performance of air traffic management system: forecasting and monitoring. Saf Sci. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.ssci.2014.10.003","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS0925753514002355",{"doi":1005},"10.1016\u002Fj.ssci.2014.10.003",{"id":1007,"createTime":1008,"updateTime":1009,"relativeEntities":1010,"slug":1011,"properties":1012,"entityType":177,"verifyStatus":178,"verifyTime":1023,"verifyNote":180,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":1024,"fullTextUrl":18,"authors":1025,"publicationType":241,"publisherRelationship":1081,"citationCount":19,"citationInfo":1132,"publishDate":1135,"publishYear":1133,"citationAnalyzeStatus":17,"lastCitationAnalyze":1136,"indexDatabases":1137,"openAccess":18,"references":18,"isForceReanalyzing":299},"c3121c5c-5c76-4f02-8140-0ae81cb8b33f","2023-11-24T14:59:01.948+00:00","2026-07-23T16:50:33.385+00:00",[],"Technical-Debt-as-indicator-for-weaknesses-in-engineering-of-automated-production-systems",{"abstract":1013,"title":1015,"gsPaper":1017,"references":1019,"doi":1021},{"EN":1014},"The concept of Technical Debt describes a situation in which a technical compromise is made despite better knowledge. The survey presented delivers insights on Technical Debt in 48 German companies supplying automated production systems. The participating companies do have some immediate benefits from taking Technical Debt under time pressure, but encounter a significant higher long-term additional effort to recover from technical debt. However, awareness for Technical Debt at these companies is low. Therefore, the automated production system manufacturers need to keep a closer eye on expenditure for Technical Debt. The developed survey can be used as a self-assessment method for other companies to compare their results with the average results from this survey.",{"EN":1016},"Technical Debt as indicator for weaknesses in engineering of automated production systems",{"VOID":1018},"[\"2001847057159885220\"]",{"VOID":1020},"Cunningham W (1993) The WyCash portfolio management system. ACM SIGPLAN OOPS Messenger 4(2):29–30\nLi Z, Avgeriou P, Liang P (2015) A systematic mapping study on technical debt and its management. J Syst Softw 101:193–220\nBesker T, Martini A, Bosch J, Tichy M (2017) An investigation of technical debt in automatic production systems. In: Proceedings of the XP2017 Scientific Workshops on XP’17, pp 1–7\nDong QH, Vogel-Heuser B (2018) Cross-disciplinary and cross-life-cycle-phase Technical Debt in automated Production Systems: two industrial case studies and a survey. IFAC-PapersOnLine 51(11):1192–1199\nAvgeriou P, Kruchten P, Ozkaya I, Seaman C (2016) Managing Technical Debt in software engineering (Dagstuhl Seminar 16162). Dagstuhl Rep 6(4):110–138\nGuo Y et al. (2011) Tracking technical debt—an exploratory case study. In: 2011 27th IEEE international conference on software maintenance (ICSM), pp 528–531\nFairley RE, Willshire MJ (2017) Better now than later: managing technical debt in systems development. Computer 50(5):80–87\nRamasubbu N, Kemerer CF (2014) Managing technical debt in enterprise software packages. IEEE Trans Softw Eng 40(8):758–772\nHolvitie J, Leppanen V (2015) Examining technical debt accumulation in software implementations. Int J Softw Eng Appl 9(6):109–124\nKruchten P, Nord RL, Ozkaya I (2012) Technical debt: from metaphor to theory and practice. IEEE Softw 29(6):18–21\nAmpatzoglou A, Ampatzoglou A, Chatzigeorgiou A, Avgeriou P (2015) The financial aspect of managing technical debt: a systematic literature review. Inf Softw Technol 64:52–73\nSnipes W, Robinson B, Guo Y, Seaman C (2012) Defining the decision factors for managing defects: a technical debt perspective. In: 2012 Workshop on managing technical debt (MTD), pp 54–60\nOzkaya I, Kruchten P, Nord R, Brown N (2012) Second international workshop on managing technical debt. In: Proceeding of the 33rd international conference on software engineering—ICSE’11, p 1212\nVogel-Heuser B, Rösch S, Martini A, Tichy M (2015) Technical debt in automated production systems. In: 2015 IEEE 7th workshop on managing technical debt (MTD), pp 49–52\nMartini A, Bosch J (2015) The danger of architectural technical debt: contagious debt and vicious circles. In: 2015 12th Working IEEE\u002FIFIP conference on software architecture, pp 1–10\nMartini A, Bosch J, Chaudron M (2015) Investigating architectural Technical Debt accumulation and refactoring over time: a multiple-case study. Inf Softw Technol 67:237–253\nMartini A, Sikander E, Medlani N (2016) Estimating and quantifying the benefits of refactoring to improve a component modularity: a case study. In: 2016 42th Euromicro conference on software engineering and advanced applications (SEAA), pp 92–99\nVogel-Heuser B, Fischer J, Feldmann S, Ulewicz S, Rösch S (2017) Modularity and architecture of PLC-based software for automated production systems: an analysis in industrial companies. J Syst Softw 131:35–62\nSchuh G et al (2011) Technology roadmapping for the production in high-wage countries. Prod Eng 5(4):463–473\nSchuh G, Gudergan G, Feige BA, Buschmeyer A, Krechting D (2015) Business transformation in the manufacturing industry—how information acquisition, analysis, usage and distribution affects the success of lifecycle-product-service-systems. Proc CIRP 30:335–340\nVogel-Heuser B, Ocker F (2018) Maintainability and evolvability of control software in machine and plant manufacturing—an industrial survey. Control Eng Pract 80:157–173\nSurvey on Technical Debt in construction—a lever for more transparency for unscheduled efforts during cooperation. https:\u002F\u002Fmediatum.ub.tum.de\u002F1472174?show_id=1472171&style=full_text. Accessed: 22 Mar 2019 (online)",{"VOID":1022},"10.1007\u002Fs11740-019-00897-0","2024-06-27T01:11:23.400+00:00","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs11740-019-00897-0",[1026,1051,1066],{"id":1027,"sortIndex":19,"researcher":18,"roles":1028,"affiliations":1029,"properties":1046},"76719ccb-61eb-4ce9-b9f4-c3f649c4bb25",[186],[1030,1038],{"id":1031,"sortIndex":19,"affiliation":1032,"properties":18},"7b49fc2d-7330-4a5b-931a-11192d1bde29",{"id":1031,"createTime":18,"updateTime":18,"relativeEntities":1033,"slug":18,"properties":1034,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1037,"statistic":18},[],{"title":1035},{"VI":1036},"Institute of Automation and Information Systems, Technical University of Munich, Munich, Germany",[],{"id":1039,"sortIndex":133,"affiliation":1040,"properties":18},"c37f5991-6af1-4138-82b0-1ab3422823da",{"id":1039,"createTime":18,"updateTime":18,"relativeEntities":1041,"slug":18,"properties":1042,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1045,"statistic":18},[],{"title":1043},{"VI":1044},"Vietnamese-German University, Thu Dau Mot City, Vietnam",[],{"title":1047,"gsAuthor":1049},{"VI":1048},"Quang Huan Dong",{"VOID":1050},"[\"RU_OC80AAAAJ\"]",{"id":1052,"sortIndex":133,"researcher":18,"roles":1053,"affiliations":1054,"properties":1061},"7f20e9c9-6775-4d4d-8793-7432c5663b8e",[186],[1055],{"id":1031,"sortIndex":19,"affiliation":1056,"properties":18},{"id":1031,"createTime":18,"updateTime":18,"relativeEntities":1057,"slug":18,"properties":1058,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1060,"statistic":18},[],{"title":1059},{"VI":1036},[],{"title":1062,"gsAuthor":1064},{"VI":1063},"Felix Ocker",{"VOID":1065},"[\"fBmo9gQAAAAJ\"]",{"id":1067,"sortIndex":146,"researcher":18,"roles":1068,"affiliations":1069,"properties":1076},"f4664ec3-f34a-4f19-975a-80a843702187",[186],[1070],{"id":1031,"sortIndex":19,"affiliation":1071,"properties":18},{"id":1031,"createTime":18,"updateTime":18,"relativeEntities":1072,"slug":18,"properties":1073,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1075,"statistic":18},[],{"title":1074},{"VI":1036},[],{"title":1077,"gsAuthor":1079},{"VI":1078},"Birgit Vogel-Heuser",{"VOID":1080},"[\"_MFvvVcAAAAJ\"]",{"url":1024,"publisher":1082,"properties":1127},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1083,"slug":10,"properties":1084,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":1087,"manageAffiliations":1096,"indexDatabases":1107,"url":18,"thumbnailPath":18,"statistic":1122,"gsStatistic":18,"type":155,"analyzePriority":18},[],{"issn":1085,"title":1086},{"VOID":13},{"VOID":15},[1088,1092],{"id":22,"createTime":18,"updateTime":18,"relativeEntities":1089,"label":1090,"description":1091,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":25},{},{"id":28,"createTime":18,"updateTime":18,"relativeEntities":1093,"label":1094,"description":1095,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":31},{},[1097,1102],{"id":35,"createTime":18,"updateTime":18,"relativeEntities":1098,"slug":18,"properties":1099,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1101,"statistic":18},[],{"title":1100},{"EN":39},[41],{"id":43,"createTime":18,"updateTime":18,"relativeEntities":1103,"slug":18,"properties":1104,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1106,"statistic":18},[],{"title":1105},{"EN":47},[41],[1108,1115],{"id":51,"indexDatabase":1109,"url":62,"indexYears":63,"academicFieldIds":1114,"indexDatabaseRanking":67},{"id":53,"createTime":18,"updateTime":18,"relativeEntities":1110,"label":1111,"description":1112,"key":59,"publicationTags":1113,"standard":18},[],{"EN":56,"VI":56},{"EN":56,"VI":58},[61],[65,66],{"id":69,"indexDatabase":1116,"url":82,"indexYears":18,"academicFieldIds":1121,"indexDatabaseRanking":18},{"id":71,"createTime":18,"updateTime":18,"relativeEntities":1117,"label":1118,"description":1119,"key":78,"publicationTags":1120,"standard":18},[],{"EN":74,"VI":74},{"EN":76,"VI":77},[80,81],[84],{"impactFactor":19,"impactFactorByYear":1123,"i10Index":98,"i10IndexLast5Year":99,"totalPublication":100,"totalPublicationByYear":1124,"totalCitation":116,"totalCitationByYear":1125,"totalCitationPerPublication":134,"totalCitationPerPublicationByYear":1126,"hindexLast5Year":154,"hindex":154},{"2012":87,"2013":88,"2014":89,"2015":90,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":89,"2022":96,"2023":97},{"2007":102,"2008":103,"2009":104,"2010":105,"2011":106,"2012":107,"2013":102,"2014":108,"2015":109,"2016":110,"2017":102,"2018":111,"2019":112,"2020":106,"2021":107,"2022":113,"2023":114,"2024":115},{"2007":118,"2008":119,"2009":120,"2010":121,"2011":122,"2012":123,"2013":124,"2014":125,"2015":126,"2016":109,"2017":127,"2018":128,"2019":129,"2020":130,"2021":106,"2022":131,"2023":132,"2024":133},{"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":142,"2014":143,"2015":144,"2016":145,"2017":146,"2018":147,"2019":148,"2020":149,"2021":150,"2022":151,"2023":152,"2024":153},{"pages":1128,"volume":1130},{"VOID":1129},"273-282",{"VOID":1131},"13",{"total":19,"publishYear":1133,"statisticByYear":1134},2019,{},"2019-04-06","2026-07-23T16:50:33.384+00:00",[80,61],{"id":1139,"createTime":1140,"updateTime":1141,"relativeEntities":1142,"slug":1143,"properties":1144,"entityType":177,"verifyStatus":178,"verifyTime":1155,"verifyNote":180,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":1156,"fullTextUrl":18,"authors":1157,"publicationType":241,"publisherRelationship":1245,"citationCount":18,"citationInfo":18,"publishDate":1296,"publishYear":404,"citationAnalyzeStatus":1297,"lastCitationAnalyze":1298,"indexDatabases":1299,"openAccess":18,"references":18,"isForceReanalyzing":299},"9070ff2d-b52c-4951-8163-6310da453bf7","2024-01-01T12:32:00.274+00:00","2026-07-22T00:07:59.283+00:00",[],"In-situ-measurement-of-lattice-strains-in-mixed-ceramic-cutting-tools-under-thermal-and-mechanical-loads-using-synchrotron-radiation",{"abstract":1145,"title":1147,"gsPaper":1149,"references":1151,"doi":1153},{"EN":1146},"To completely understand wear mechanisms of mixed ceramic cutting tools (Al2O3–TiC), residual stress states and the superposition of external loads during hard turning should be investigated. This can be done via X-ray diffraction using high-energy synchrotron radiation to determine lattice strains in the material. For this reason, in first model tests, strain states in mixed ceramics were determined during the application of external loads. An experimental setup was developed to measure lattice strains in the different phases of the ceramic material in situ during thermal, mechanical and thermo-mechanical loading for first reference. The accuracy of the setup was sufficient to clearly determine shifts in lattice parameters in the different phases due to external loads. By applying a thermal load on the mixed ceramic material the two main phases showed different elastic lattice strains. Thus, a slightly lower coefficient of thermal expansion in the Al2O3-phase than in the Ti(O,C)-phase could be determined. This indicated the development of compressive stresses in the Al2O3-phase and tensile stresses in the Ti(O,C)-phase at room temperature. By applying external bending stresses to the mixed ceramic material, for both phases equal lattice strains could be determined. From these strains stresses could be calculated for both phases which were in the same order of magnitude as external stresses. With further in situ investigations of strain and stress states in the different phases of mixed ceramics during friction and turning experiments a more comprehensive characterization of wear mechanisms is possible.",{"EN":1148},"In situ measurement of lattice strains in mixed ceramic cutting tools under thermal and mechanical loads using synchrotron radiation",{"VOID":1150},"[]",{"VOID":1152},"Uhlmann E, Richarz S, Fuentes JAO (2011) Hartdrehen von PM-Schnellarbeitsstahl. Diam Bus 1:10–19\nOphey L (1998) Trockenbearbeitung. Bearbeitung metallischer Werkstoffe ohne Kühlschmierstoffe. Expert, Renningen-Malmsheim\nKumar AS, Durai AR, Sornakumar T (2006) Wear behaviour of alumina based ceramic cutting tools on machining steels. Tribol Int 39:191–197\nBhattacharya AK, Zimmermann K, Schneider GA, Hintze W (2008) Influence of surface modification on the cutting performance of reaction-sintered Al2O3–TiOC ceramics. J Am Ceram Soc 91:2982–2986\nCakan A (2011) Real-time monitoring of flank wear behavior of ceramic cutting tool in turning hardened steels. Int J Adv Manuf Tech 52:897–903\nDureja JS, Gupta VK, Sharma VS, Dogra M (2010) Wear mechanisms of coated mixed-ceramic tools during finish hard turning of hot die steel. J Mech Eng Sci 224:183–193\nSingh D, Rao PV (2010) Flank wear prediction of ceramic tools in hard turning. Int J Adv Manuf Techol 50:479–493\nPfeiffer W, Frey T (2006) Strengthening of ceramics by shot peening. J Eur Ceram Soc 26:2639–2645\nVogli E, Tillmann W, Selvadurai-Lassl U, Fischer G, Herper J (2011) Influence of Ti\u002FTiAlN-multilayer designs on their residual stresses and mechanical properties. Appl Surf Sci 257:8550–8557\nJianxin D, Zhenxing D, Dongling Y, Hui Z, Xing A, Jun Z (2010) Fabrication performance of Al2O3\u002F(W, Ti)C + Al2O3\u002FTiC multilayered ceramic cutting tools. Mater Sci Eng, A 527:1039–1047\nDeng JX, Yun DL, Zhou HM, Tan YQ (2012) Layered structures in ceramic nozzles for improved erosion wear resistance in industrial coal-water-slurry boilers. Ceram Int 36:299–306\nHussainova I, Kolesnikova A, Hussainov M, Romanov A (2009) Effect of thermo-elastic residual stresses on erosive performance of cermets with core–rim structured ceramic grains. Wear 267:177–185\nBartolomé JF, Aza AH, Martín A, Pastor JY, Llorca J, Torrecillas R, Bruno G (2007) Alumina\u002Fzirconia micro\u002Fnanocomposites: a new material for biomedical applications with superior sliding wear resistance. J Am Ceram Soc 90:3177–3184\nGibmeier J, Hartmann S, Scholtes B (2005) Effect of applied and residual stresses on the analysis of mechanical properties by means of instrumented indentation techniques. Mater Sci Forum 490–491:454–459\nWaikar RA, Guo YB (2007) Residual stress evolution and mechanical state of hard machined components in sliding contact. Tribol Trans 50:531–539\nKurt A (2009) Modelling of the cutting tool stresses in machining of Inconel 718 using artificial neural networks. Expert Syst Appl 36:9645–9657\nFitzpatrick ME, Hutchings MT, Withers PJ (1997) Separation of macroscopic, elastic mismatch and thermal expansion misfit stresses in metal matrix composite quenched plates from neutron diffraction measurements. Acta Mater 45:4867–4876\nDIN EN 843-1 (2008) Hochleistungskeramik—Mechanische Eigenschaften monolithischer Keramik bei Raumtemperatur—Teil 1: Bestimmung der Biegefestigkeit. Beuth, Berlin\nZimmermann K, Schneider GA, Bhattacharya AK, Hintze W (2007) Surface modification of Al2O3\u002FTiC cutting ceramics. J Am Ceram Soc 90:3773–3778\nHe BB (2009) Two-dimensional X-ray diffraction. Wiley, Hoboken\nWojdyr M (2010) Fityk: a general-purpose peak fitting program. J Appl Cryst 43:1126–1128\nRohrbach C, Ahrensdorf K (1989) Handbuch für experimentelle Spannungsanalyse. VDI, Düsseldorf\nSalmang H, Scholze H (2007) Keramik. Springer, Berlin\nEigenmann B (1992) Röntgenographische Analyse inhomogener Spannungszustände in Keramiken, Keramik-Metall-Fügeverbindungen und dünnen Schichten. Dissertation Karlsruhe University\nSchnell W, Gross D, Hauger W (1998) Technische Mechanik. Springer, Berlin",{"VOID":1154},"10.1007\u002Fs11740-012-0426-2","2024-06-26T21:07:50.903+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs11740-012-0426-2",[1158,1173,1186,1201,1216,1231],{"id":1159,"sortIndex":19,"researcher":18,"roles":1160,"affiliations":1161,"properties":1170},"989bf522-fbc8-46f1-87f0-5464cb701d05",[186],[1162],{"id":1163,"sortIndex":19,"affiliation":1164,"properties":18},"387052be-c5a0-4435-b338-6abf3eae7129",{"id":1163,"createTime":18,"updateTime":18,"relativeEntities":1165,"slug":18,"properties":1166,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1169,"statistic":18},[],{"title":1167},{"VI":1168},"Institute of Production Management and Technology, Hamburg University of Technology, Hamburg, Germany",[],{"title":1171},{"VI":1172},"C. Eichenseer",{"id":1174,"sortIndex":133,"researcher":18,"roles":1175,"affiliations":1176,"properties":1183},"0087b431-ab32-43c5-8cb5-eea0cc2ac526",[186],[1177],{"id":1163,"sortIndex":19,"affiliation":1178,"properties":18},{"id":1163,"createTime":18,"updateTime":18,"relativeEntities":1179,"slug":18,"properties":1180,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1182,"statistic":18},[],{"title":1181},{"VI":1168},[],{"title":1184},{"VI":1185},"I. Wittmann",{"id":1187,"sortIndex":146,"researcher":18,"roles":1188,"affiliations":1189,"properties":1198},"4b38b3f0-ef9f-400a-bea3-05ad79c14104",[186],[1190],{"id":1191,"sortIndex":19,"affiliation":1192,"properties":18},"4f7510d3-a21e-4a0e-9704-8846c4abf93b",{"id":1191,"createTime":18,"updateTime":18,"relativeEntities":1193,"slug":18,"properties":1194,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1197,"statistic":18},[],{"title":1195},{"VI":1196},"Institute of Materials Physics and Technology, Hamburg University of Technology, Hamburg, Germany",[],{"title":1199},{"VI":1200},"C. Hartig",{"id":1202,"sortIndex":227,"researcher":18,"roles":1203,"affiliations":1204,"properties":1213},"0743a17b-53fc-46ba-97fb-5ac7d1833137",[186],[1205],{"id":1206,"sortIndex":19,"affiliation":1207,"properties":18},"0c0476d2-58f6-48bb-8076-5592db9bf63b",{"id":1206,"createTime":18,"updateTime":18,"relativeEntities":1208,"slug":18,"properties":1209,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1212,"statistic":18},[],{"title":1210},{"VI":1211},"Institute of Advanced Ceramics, Hamburg University of Technology, Hamburg, Germany",[],{"title":1214},{"VI":1215},"G. A. Schneider",{"id":1217,"sortIndex":291,"researcher":18,"roles":1218,"affiliations":1219,"properties":1228},"cc33a065-4c73-48b3-8b4e-4264023ecb58",[186],[1220],{"id":1221,"sortIndex":19,"affiliation":1222,"properties":18},"4465f135-2e10-4049-84b5-85f179a519c2",{"id":1221,"createTime":18,"updateTime":18,"relativeEntities":1223,"slug":18,"properties":1224,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1227,"statistic":18},[],{"title":1225},{"VI":1226},"Helmholtz-Zentrum Geesthacht, Center for Materials and Coastal Research, Institute of Materials Research, Geesthacht, Germany",[],{"title":1229},{"VI":1230},"N. Schell",{"id":1232,"sortIndex":1233,"researcher":18,"roles":1234,"affiliations":1235,"properties":1242},"a2d2aec8-7c03-4ba7-a3cd-92425da6150d",5,[186],[1236],{"id":1163,"sortIndex":19,"affiliation":1237,"properties":18},{"id":1163,"createTime":18,"updateTime":18,"relativeEntities":1238,"slug":18,"properties":1239,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1241,"statistic":18},[],{"title":1240},{"VI":1168},[],{"title":1243},{"VI":1244},"W. Hintze",{"url":1156,"publisher":1246,"properties":1291},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1247,"slug":10,"properties":1248,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":1251,"manageAffiliations":1260,"indexDatabases":1271,"url":18,"thumbnailPath":18,"statistic":1286,"gsStatistic":18,"type":155,"analyzePriority":18},[],{"issn":1249,"title":1250},{"VOID":13},{"VOID":15},[1252,1256],{"id":22,"createTime":18,"updateTime":18,"relativeEntities":1253,"label":1254,"description":1255,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":25},{},{"id":28,"createTime":18,"updateTime":18,"relativeEntities":1257,"label":1258,"description":1259,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":31},{},[1261,1266],{"id":35,"createTime":18,"updateTime":18,"relativeEntities":1262,"slug":18,"properties":1263,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1265,"statistic":18},[],{"title":1264},{"EN":39},[41],{"id":43,"createTime":18,"updateTime":18,"relativeEntities":1267,"slug":18,"properties":1268,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1270,"statistic":18},[],{"title":1269},{"EN":47},[41],[1272,1279],{"id":51,"indexDatabase":1273,"url":62,"indexYears":63,"academicFieldIds":1278,"indexDatabaseRanking":67},{"id":53,"createTime":18,"updateTime":18,"relativeEntities":1274,"label":1275,"description":1276,"key":59,"publicationTags":1277,"standard":18},[],{"EN":56,"VI":56},{"EN":56,"VI":58},[61],[65,66],{"id":69,"indexDatabase":1280,"url":82,"indexYears":18,"academicFieldIds":1285,"indexDatabaseRanking":18},{"id":71,"createTime":18,"updateTime":18,"relativeEntities":1281,"label":1282,"description":1283,"key":78,"publicationTags":1284,"standard":18},[],{"EN":74,"VI":74},{"EN":76,"VI":77},[80,81],[84],{"impactFactor":19,"impactFactorByYear":1287,"i10Index":98,"i10IndexLast5Year":99,"totalPublication":100,"totalPublicationByYear":1288,"totalCitation":116,"totalCitationByYear":1289,"totalCitationPerPublication":134,"totalCitationPerPublicationByYear":1290,"hindexLast5Year":154,"hindex":154},{"2012":87,"2013":88,"2014":89,"2015":90,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":89,"2022":96,"2023":97},{"2007":102,"2008":103,"2009":104,"2010":105,"2011":106,"2012":107,"2013":102,"2014":108,"2015":109,"2016":110,"2017":102,"2018":111,"2019":112,"2020":106,"2021":107,"2022":113,"2023":114,"2024":115},{"2007":118,"2008":119,"2009":120,"2010":121,"2011":122,"2012":123,"2013":124,"2014":125,"2015":126,"2016":109,"2017":127,"2018":128,"2019":129,"2020":130,"2021":106,"2022":131,"2023":132,"2024":133},{"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":142,"2014":143,"2015":144,"2016":145,"2017":146,"2018":147,"2019":148,"2020":149,"2021":150,"2022":151,"2023":152,"2024":153},{"pages":1292,"volume":1294},{"VOID":1293},"283-289",{"VOID":1295},"7","2012-11-02","ERROR_IN_GET_PLATFORM_ID","2026-07-22T00:07:59.282+00:00",[80,61],{"id":1301,"createTime":1302,"updateTime":1303,"relativeEntities":1304,"slug":1305,"properties":1306,"entityType":177,"verifyStatus":178,"verifyTime":1317,"verifyNote":180,"languages":18,"translateLanguages":18,"viewCount":133,"primaryUrl":1318,"fullTextUrl":18,"authors":1319,"publicationType":241,"publisherRelationship":1348,"citationCount":856,"citationInfo":1399,"publishDate":1402,"publishYear":1400,"citationAnalyzeStatus":17,"lastCitationAnalyze":1403,"indexDatabases":1404,"openAccess":18,"references":18,"isForceReanalyzing":299},"18a655d6-ce92-4db1-811e-4fcec785ffc1","2024-01-21T17:19:33.144+00:00","2026-07-18T20:02:03.719+00:00",[],"Introduction-to-sheet-bulk-metal-forming",{"abstract":1307,"title":1309,"gsPaper":1311,"references":1313,"doi":1315},{"EN":1308},"Sheet-bulk metal forming as a new class of manufacturing processes is one of the possible answers production processes provide to the increasing demands on functional integration into light weight parts made of high strength steel. Research in this field is carried out in several places. The special issue was initiated by the Transregional Collaborative Research Centre 73. It contains newest results from this research initiative as well as international results in the field of sheet-bulk metal forming.",{"EN":1310},"Introduction to sheet-bulk metal forming",{"VOID":1312},"[\"4155572051268608487\"]",{"VOID":1314},"Allwood JM, Cullen JM (2011) Sustainable materials with both eyes open. UIT Cambridge, Cambridge\nLange K (1985) Handbook of metal forming. McGraw-Hill, New York\nMerklein M (2009) Manufacturing of complex functional components with variants by using a new sheet metal forming process. In: Proceedings of the 42nd plenary meeting of the international cold forging group, Chinese Society for Technology of Plasticity, pp 143–155\nOyachi Y, Allwood JM (2011) Characterizing the class of local metal sheet thickening processes. In: Steel research international—special edition: 10th international conference on technology in plasticity, pp 1036–1041\nMerklein M, Tekkaya AE, Brosius A, Opel S, Koch J (2011) Overview on sheet-bulk metal forming processes. In: Proceedings of the 10th international conference on technology of plasticity, pp 1109–1114\nMerklein M, Allwood JM, Behrens BA, Brosius A, Hagenah H, Kuzman K, Mori K, Tekkaya AE, Weckenmann A (2012) Bulk forming of sheet metal. CIRP Ann Manuf Technol 61(2):725–745",{"VOID":1316},"10.1007\u002Fs11740-016-0661-z","2024-06-23T06:09:21.722+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs11740-016-0661-z",[1320,1335],{"id":1321,"sortIndex":19,"researcher":18,"roles":1322,"affiliations":1323,"properties":1332},"2773d6c8-bc59-4cf1-b9e2-c2be52b664d1",[186],[1324],{"id":1325,"sortIndex":19,"affiliation":1326,"properties":18},"fd9e018d-33ee-4433-a049-c74b28b2838c",{"id":1325,"createTime":18,"updateTime":18,"relativeEntities":1327,"slug":18,"properties":1328,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1331,"statistic":18},[],{"title":1329},{"VI":1330},"Institute of Manufacturing Technology, Friedrich-Alexander-Universität Erlangen-Nürnberg (FAU), Erlangen, Germany",[],{"title":1333},{"VI":1334},"M. Merklein",{"id":1336,"sortIndex":133,"researcher":18,"roles":1337,"affiliations":1338,"properties":1345},"cb79cbc0-e0ac-4c31-b177-5c2e228effbb",[186],[1339],{"id":1325,"sortIndex":19,"affiliation":1340,"properties":18},{"id":1325,"createTime":18,"updateTime":18,"relativeEntities":1341,"slug":18,"properties":1342,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1344,"statistic":18},[],{"title":1343},{"VI":1330},[],{"title":1346},{"VI":1347},"H. Hagenah",{"url":1318,"publisher":1349,"properties":1394},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1350,"slug":10,"properties":1351,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":1354,"manageAffiliations":1363,"indexDatabases":1374,"url":18,"thumbnailPath":18,"statistic":1389,"gsStatistic":18,"type":155,"analyzePriority":18},[],{"issn":1352,"title":1353},{"VOID":13},{"VOID":15},[1355,1359],{"id":22,"createTime":18,"updateTime":18,"relativeEntities":1356,"label":1357,"description":1358,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":25},{},{"id":28,"createTime":18,"updateTime":18,"relativeEntities":1360,"label":1361,"description":1362,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":31},{},[1364,1369],{"id":35,"createTime":18,"updateTime":18,"relativeEntities":1365,"slug":18,"properties":1366,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1368,"statistic":18},[],{"title":1367},{"EN":39},[41],{"id":43,"createTime":18,"updateTime":18,"relativeEntities":1370,"slug":18,"properties":1371,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1373,"statistic":18},[],{"title":1372},{"EN":47},[41],[1375,1382],{"id":51,"indexDatabase":1376,"url":62,"indexYears":63,"academicFieldIds":1381,"indexDatabaseRanking":67},{"id":53,"createTime":18,"updateTime":18,"relativeEntities":1377,"label":1378,"description":1379,"key":59,"publicationTags":1380,"standard":18},[],{"EN":56,"VI":56},{"EN":56,"VI":58},[61],[65,66],{"id":69,"indexDatabase":1383,"url":82,"indexYears":18,"academicFieldIds":1388,"indexDatabaseRanking":18},{"id":71,"createTime":18,"updateTime":18,"relativeEntities":1384,"label":1385,"description":1386,"key":78,"publicationTags":1387,"standard":18},[],{"EN":74,"VI":74},{"EN":76,"VI":77},[80,81],[84],{"impactFactor":19,"impactFactorByYear":1390,"i10Index":98,"i10IndexLast5Year":99,"totalPublication":100,"totalPublicationByYear":1391,"totalCitation":116,"totalCitationByYear":1392,"totalCitationPerPublication":134,"totalCitationPerPublicationByYear":1393,"hindexLast5Year":154,"hindex":154},{"2012":87,"2013":88,"2014":89,"2015":90,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":89,"2022":96,"2023":97},{"2007":102,"2008":103,"2009":104,"2010":105,"2011":106,"2012":107,"2013":102,"2014":108,"2015":109,"2016":110,"2017":102,"2018":111,"2019":112,"2020":106,"2021":107,"2022":113,"2023":114,"2024":115},{"2007":118,"2008":119,"2009":120,"2010":121,"2011":122,"2012":123,"2013":124,"2014":125,"2015":126,"2016":109,"2017":127,"2018":128,"2019":129,"2020":130,"2021":106,"2022":131,"2023":132,"2024":133},{"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":142,"2014":143,"2015":144,"2016":145,"2017":146,"2018":147,"2019":148,"2020":149,"2021":150,"2022":151,"2023":152,"2024":153},{"pages":1395,"volume":1397},{"VOID":1396},"1-3",{"VOID":1398},"10",{"total":856,"publishYear":1400,"statisticByYear":1401},2016,{"2017":146,"2018":133,"2019":291,"2020":227,"2021":227,"2022":146,"2023":133},"2016-01-27","2026-07-18T20:02:03.718+00:00",[80,61],{"id":1406,"createTime":1407,"updateTime":1408,"relativeEntities":1409,"slug":1410,"properties":1411,"entityType":177,"verifyStatus":178,"verifyTime":1422,"verifyNote":180,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":1423,"fullTextUrl":18,"authors":1424,"publicationType":241,"publisherRelationship":1476,"citationCount":19,"citationInfo":1526,"publishDate":1528,"publishYear":851,"citationAnalyzeStatus":407,"lastCitationAnalyze":1529,"indexDatabases":1530,"openAccess":18,"references":18,"isForceReanalyzing":299},"3d56931e-9034-4f49-8124-8e4334d92cff","2024-02-09T10:53:07.159+00:00","2026-07-17T23:16:39.834+00:00",[],"Experimental-investigation-of-specific-cutting-forces-and-estimation-of-the-heat-partitioning-under-increasing-tool-wear-in-machining-nickel-based-super-alloy-IN-718",{"abstract":1412,"title":1414,"gsPaper":1416,"references":1418,"doi":1420},{"EN":1413},"Presented are an experimental setup and affiliated methodology to measure the specific cutting forces in the milling process with proceeding tool wear at simplified orthogonal milling kinematics. The cutting forces, cutter rotation angle and chip temperature are acquired by a time sensitive measuring system consisting of a synchronized dynamometer, ratio pyrometer and spindle encoder. The approach allows the accurate acquisition of cutting forces under defined engagement conditions and thus constitutes a valuable basis for cutting force modelling and tool wear monitoring approaches. The results show uniformly and linearly increasing forces over the entire range of undeformed chip thickness due to wear. Besides a mechanical view on the cutting process, also the thermal domain was included into the analysis. Therefore, a ratio pyrometer was used as part of the synchronized measurement system tracking the chips backside temperature in order to estimate a virtually continuous heat flow into the chip. This heat flow increased with wear and process power, which indicates that the chip’s temperature can be used as process monitoring variable for tool wear.",{"EN":1415},"Experimental investigation of specific cutting forces and estimation of the heat partitioning under increasing tool wear in machining nickel-based super alloy IN 718",{"VOID":1417},"[\"9248143348140425950\"]",{"VOID":1419},"Brinksmeier E, Klocke F, Lucca A, Sölter J, Meyer D (2014) Process signatures—a new approach to solve the inverse surface integrity problem in machining processes. Procedia CIRP 13:429–434\nChoudhury IA, El-Baradie MA (1998) Machinability of nickel-base super alloys: a general review. J Mater Process Technol 77(1–3):278–284\nAugspurger T, Bergs T, Döbbeler B (2019) Measurement and modeling of heat partitions and temperature fields in the workpiece for cutting Inconel 718, AISI 1045, Ti6Al4V, and AlMgSi0.5. J Manuf Sci Eng 141(6):61007\nDudzinski D, Devillez A, Moufki A, Larrouquère D, Zerrouki V, Vigneau J (2004) A review of developments towards dry and high speed machining of Inconel 718 alloy. Int J Mach Tools Manuf 44(4):439–456\nEzugwu EO (2005) Key improvements in the machining of difficult-to-cut aerospace superalloys. Int J Mach Tools Manuf 45(12–13):1353–1367\nTeti R, Jemielniak K, O’Donnell G, Dornfeld D (2010) Advanced monitoring of machining operations. CIRP Ann Manuf Technol 59\u002F2, ISSN 0007-8506(CIRP Annals):717–739\nSegreto T, Simeone A, Teti R (2012) Sensor fusion for tool state classification in Nickel Superalloy high performance cutting. Procedia CIRP 1:593–598\nSchulze V, Becke C, Pabst R (2011) Specific machining forces and resultant force vectors for machining of reinforced plastics. CIRP Ann 60(1):69–72\nKienzle O, Victor H (1952) Die Bestimmung von Kräften und Leistungen an spanenden Werkzeugen und Werkzeugmaschinen. In: VDI-Z 94, 11\u002F12, pp 299–305\nAltintas Y, Lee P (1996) A general mechanics and dynamics model for helical end mills. CIRP Ann 45(1):59–64\nSchwenzer M, Auerbach T, Döbbeler B, Bergs T (2019) Comparative study on optimization algorithms for online identification of an instantaneous force model in milling. Int J Adv Manuf Technol 101(9–12):2249–2257\nByrne G, Dornfeld D, Inasaki I, Ketteler G, König W, Teti R (1995) Tool condition monitoring (TCM)—the status of research and industrial application. CIRP Ann 44(2):541–567\nPrickett PW, John C (1999) An overview of approaches to end milling tool monitoring. Int J Mach Tools Manuf 39(1):105–122\nLin SC, Ting CJ (1995) Tool wear monitoring in drilling using force signals. Wear 180(1–2):53–60\nLópez de Lacalle LN, Urbicain Pelayo G, Fernández-Valdivielso A, Alvarez A, González H (2017) Wear-dependent specific coefficients in a mechanistic model for turning of nickel-based superalloy with ceramic tools. Open Eng 7(1):581\nCho S-S, Komvopoulos K (1998) Cutting force variation due to wear of multi-layer ceramic coated tools. J Tribol 120(1):75\nFang N, Wu Q (2009) A comparative study of the cutting forces in high speed machining of Ti–6Al–4V and Inconel 718 with a round cutting edge tool. J Mater Process Technol 209(9):4385–4389\nSchwenzer M, Stemmler S, Ay M, Bergs T, Abel D (2019) Ensemble Kalman filtering for force model identification in milling. Procedia CIRP 82:296–301\nGrossi N (2017) Accurate and fast measurement of specific cutting force coefficients changing with spindle speed. Int J Precis Eng Manuf 18(8):1173–1180\nAuerbach T, Gierlings S, Veselovac D, Seidner R, Kamps S, Klocke F (2015) Concept for a technology assistance system to analyze and evaluate materials and tools for milling. In: Proceedings of the ASME Turbo Expo 2015. Turbine technical conference and exposition, June 15–19, 2015, Montreal, Quebec, Canada. ASME Turbo Expo 2015: Turbine Technical Conference and Exposition, Montreal, Quebec, Canada. Monday 15 June 2015. ASME, New York, N.Y., V006T21A006\nWan M, Zhang WH, Tan G, Qin GH (2016) New algorithm for calibration of instantaneous cutting-force coefficients and radial run-out parameters in flat end milling. Proc Inst Mech Eng Part B J Eng Manuf 221(6):1007–1019\nWang G, Peng D, Qin X, Cui Y (2012) An improved dynamic milling force coefficients identification method considering edge force. J Mech Sci Technol 26(5):1585–1590\nAugspurger T, Bergs T, Döbbeler B, Lima A (2019) Methodology for the measurement of the heat partitioning by thermal imaging in the orthogonal cutting process. ASME J Heat Transf 141(7):072101. https:\u002F\u002Fdoi.org\u002F10.1115\u002F1.4043170",{"VOID":1421},"10.1007\u002Fs11740-020-00971-y","2024-05-27T18:38:05.960+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs11740-020-00971-y",[1425,1440,1453],{"id":1426,"sortIndex":19,"researcher":18,"roles":1427,"affiliations":1428,"properties":1437},"548acde4-a8e7-4545-bd81-0cd4c8bd43c7",[186],[1429],{"id":1430,"sortIndex":19,"affiliation":1431,"properties":18},"39be5e73-9f1d-44e3-9f00-05a86b33070a",{"id":1430,"createTime":18,"updateTime":18,"relativeEntities":1432,"slug":18,"properties":1433,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1436,"statistic":18},[],{"title":1434},{"VI":1435},"Laboratory for Machine Tools and Production Engineering (WZL) of RWTH Aachen University, Aachen, Germany",[],{"title":1438},{"VI":1439},"Thorsten Augspurger",{"id":1441,"sortIndex":133,"researcher":18,"roles":1442,"affiliations":1443,"properties":1450},"4a6fdad8-331d-48ab-a19d-a2dfe2f8f6b2",[186],[1444],{"id":1430,"sortIndex":19,"affiliation":1445,"properties":18},{"id":1430,"createTime":18,"updateTime":18,"relativeEntities":1446,"slug":18,"properties":1447,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1449,"statistic":18},[],{"title":1448},{"VI":1435},[],{"title":1451},{"VI":1452},"Daniel Schraknepper",{"id":1454,"sortIndex":146,"researcher":18,"roles":1455,"affiliations":1456,"properties":1471},"6854ca8f-863f-4ad7-851b-a3ab046e998c",[186],[1457,1463],{"id":1430,"sortIndex":19,"affiliation":1458,"properties":18},{"id":1430,"createTime":18,"updateTime":18,"relativeEntities":1459,"slug":18,"properties":1460,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1462,"statistic":18},[],{"title":1461},{"VI":1435},[],{"id":1464,"sortIndex":133,"affiliation":1465,"properties":18},"99c1c691-cb35-4d60-bff2-fdce4526339e",{"id":1464,"createTime":18,"updateTime":18,"relativeEntities":1466,"slug":18,"properties":1467,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1470,"statistic":18},[],{"title":1468},{"VI":1469},"Fraunhofer Institute for Production Technology, Aachen, Germany",[],{"title":1472,"gsAuthor":1474},{"VI":1473},"Thomas Bergs",{"VOID":1475},"[\"cSPgdO4AAAAJ\"]",{"url":1423,"publisher":1477,"properties":1522},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1478,"slug":10,"properties":1479,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":1482,"manageAffiliations":1491,"indexDatabases":1502,"url":18,"thumbnailPath":18,"statistic":1517,"gsStatistic":18,"type":155,"analyzePriority":18},[],{"issn":1480,"title":1481},{"VOID":13},{"VOID":15},[1483,1487],{"id":22,"createTime":18,"updateTime":18,"relativeEntities":1484,"label":1485,"description":1486,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":25},{},{"id":28,"createTime":18,"updateTime":18,"relativeEntities":1488,"label":1489,"description":1490,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":31},{},[1492,1497],{"id":35,"createTime":18,"updateTime":18,"relativeEntities":1493,"slug":18,"properties":1494,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1496,"statistic":18},[],{"title":1495},{"EN":39},[41],{"id":43,"createTime":18,"updateTime":18,"relativeEntities":1498,"slug":18,"properties":1499,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1501,"statistic":18},[],{"title":1500},{"EN":47},[41],[1503,1510],{"id":51,"indexDatabase":1504,"url":62,"indexYears":63,"academicFieldIds":1509,"indexDatabaseRanking":67},{"id":53,"createTime":18,"updateTime":18,"relativeEntities":1505,"label":1506,"description":1507,"key":59,"publicationTags":1508,"standard":18},[],{"EN":56,"VI":56},{"EN":56,"VI":58},[61],[65,66],{"id":69,"indexDatabase":1511,"url":82,"indexYears":18,"academicFieldIds":1516,"indexDatabaseRanking":18},{"id":71,"createTime":18,"updateTime":18,"relativeEntities":1512,"label":1513,"description":1514,"key":78,"publicationTags":1515,"standard":18},[],{"EN":74,"VI":74},{"EN":76,"VI":77},[80,81],[84],{"impactFactor":19,"impactFactorByYear":1518,"i10Index":98,"i10IndexLast5Year":99,"totalPublication":100,"totalPublicationByYear":1519,"totalCitation":116,"totalCitationByYear":1520,"totalCitationPerPublication":134,"totalCitationPerPublicationByYear":1521,"hindexLast5Year":154,"hindex":154},{"2012":87,"2013":88,"2014":89,"2015":90,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":89,"2022":96,"2023":97},{"2007":102,"2008":103,"2009":104,"2010":105,"2011":106,"2012":107,"2013":102,"2014":108,"2015":109,"2016":110,"2017":102,"2018":111,"2019":112,"2020":106,"2021":107,"2022":113,"2023":114,"2024":115},{"2007":118,"2008":119,"2009":120,"2010":121,"2011":122,"2012":123,"2013":124,"2014":125,"2015":126,"2016":109,"2017":127,"2018":128,"2019":129,"2020":130,"2021":106,"2022":131,"2023":132,"2024":133},{"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":142,"2014":143,"2015":144,"2016":145,"2017":146,"2018":147,"2019":148,"2020":149,"2021":150,"2022":151,"2023":152,"2024":153},{"pages":1523,"volume":1525},{"VOID":1524},"491-498",{"VOID":848},{"total":19,"publishYear":851,"statisticByYear":1527},{},"2020-07-06","2026-07-17T23:16:39.833+00:00",[80,61],{"id":1532,"createTime":1533,"updateTime":1534,"relativeEntities":1535,"slug":1536,"properties":1537,"entityType":177,"verifyStatus":178,"verifyTime":1546,"verifyNote":180,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":1547,"fullTextUrl":18,"authors":1548,"publicationType":241,"publisherRelationship":1592,"citationCount":19,"citationInfo":1642,"publishDate":1645,"publishYear":1643,"citationAnalyzeStatus":407,"lastCitationAnalyze":1646,"indexDatabases":1647,"openAccess":18,"references":1648,"isForceReanalyzing":299},"a736dde2-6df3-4647-8083-b818f0ead450","2024-01-18T02:48:06.768+00:00","2026-07-16T20:55:19.017+00:00",[],"Efficient-control-of-metal-forming-machines-with-an-automated-load-and-measurement-device",{"abstract":1538,"title":1540,"gsPaper":1542,"doi":1544},{"EN":1539},"The properties of metal-forming machines influence the quality of the produced sheet-metal components. To investigate the implication of machine characteristics on quality the components, an automated load and measurement device (LMD) has been developed. This equipment simplifies the investigation of machine properties and increases the reproducibility of the results. Furthermore, it enables the study of other factors like warming-up effects on machine behavior which are not enough researched.",{"EN":1541},"Efficient control of metal-forming machines with an automated load and measurement device",{"VOID":1543},"[\"4424942787300234957\"]",{"VOID":1545},"10.1007\u002Fs11740-009-0195-8","2024-05-04T21:17:36.108+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs11740-009-0195-8",[1549,1564,1579],{"id":1550,"sortIndex":19,"researcher":18,"roles":1551,"affiliations":1552,"properties":1561},"8dc0dae1-2b72-4fd2-ba10-bb37d880c832",[186],[1553],{"id":1554,"sortIndex":19,"affiliation":1555,"properties":18},"28def73c-d2de-466d-926c-579e83a7283f",{"id":1554,"createTime":18,"updateTime":18,"relativeEntities":1556,"slug":18,"properties":1557,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1560,"statistic":18},[],{"title":1558},{"VI":1559},"Institute of Metal Forming and Metal-Forming Machines, Garbsen, Germany",[],{"title":1562},{"VI":1563},"Mohsen Javadi",{"id":1565,"sortIndex":133,"researcher":18,"roles":1566,"affiliations":1567,"properties":1574},"c800b2d3-bdcc-4c08-8f82-9ef358269a39",[186],[1568],{"id":1554,"sortIndex":19,"affiliation":1569,"properties":18},{"id":1554,"createTime":18,"updateTime":18,"relativeEntities":1570,"slug":18,"properties":1571,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1573,"statistic":18},[],{"title":1572},{"VI":1559},[],{"title":1575,"gsAuthor":1577},{"VI":1576},"Bernd-Arno Behrens",{"VOID":1578},"[\"FItUvAIAAAAJ\"]",{"id":1580,"sortIndex":146,"researcher":18,"roles":1581,"affiliations":1582,"properties":1589},"89568680-019f-430e-85e2-3b096cc90430",[186],[1583],{"id":1554,"sortIndex":19,"affiliation":1584,"properties":18},{"id":1554,"createTime":18,"updateTime":18,"relativeEntities":1585,"slug":18,"properties":1586,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1588,"statistic":18},[],{"title":1587},{"VI":1559},[],{"title":1590},{"VI":1591},"Richard Krimm",{"url":1547,"publisher":1593,"properties":1638},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1594,"slug":10,"properties":1595,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":1598,"manageAffiliations":1607,"indexDatabases":1618,"url":18,"thumbnailPath":18,"statistic":1633,"gsStatistic":18,"type":155,"analyzePriority":18},[],{"issn":1596,"title":1597},{"VOID":13},{"VOID":15},[1599,1603],{"id":22,"createTime":18,"updateTime":18,"relativeEntities":1600,"label":1601,"description":1602,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":25},{},{"id":28,"createTime":18,"updateTime":18,"relativeEntities":1604,"label":1605,"description":1606,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":31},{},[1608,1613],{"id":35,"createTime":18,"updateTime":18,"relativeEntities":1609,"slug":18,"properties":1610,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1612,"statistic":18},[],{"title":1611},{"EN":39},[41],{"id":43,"createTime":18,"updateTime":18,"relativeEntities":1614,"slug":18,"properties":1615,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1617,"statistic":18},[],{"title":1616},{"EN":47},[41],[1619,1626],{"id":51,"indexDatabase":1620,"url":62,"indexYears":63,"academicFieldIds":1625,"indexDatabaseRanking":67},{"id":53,"createTime":18,"updateTime":18,"relativeEntities":1621,"label":1622,"description":1623,"key":59,"publicationTags":1624,"standard":18},[],{"EN":56,"VI":56},{"EN":56,"VI":58},[61],[65,66],{"id":69,"indexDatabase":1627,"url":82,"indexYears":18,"academicFieldIds":1632,"indexDatabaseRanking":18},{"id":71,"createTime":18,"updateTime":18,"relativeEntities":1628,"label":1629,"description":1630,"key":78,"publicationTags":1631,"standard":18},[],{"EN":74,"VI":74},{"EN":76,"VI":77},[80,81],[84],{"impactFactor":19,"impactFactorByYear":1634,"i10Index":98,"i10IndexLast5Year":99,"totalPublication":100,"totalPublicationByYear":1635,"totalCitation":116,"totalCitationByYear":1636,"totalCitationPerPublication":134,"totalCitationPerPublicationByYear":1637,"hindexLast5Year":154,"hindex":154},{"2012":87,"2013":88,"2014":89,"2015":90,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":89,"2022":96,"2023":97},{"2007":102,"2008":103,"2009":104,"2010":105,"2011":106,"2012":107,"2013":102,"2014":108,"2015":109,"2016":110,"2017":102,"2018":111,"2019":112,"2020":106,"2021":107,"2022":113,"2023":114,"2024":115},{"2007":118,"2008":119,"2009":120,"2010":121,"2011":122,"2012":123,"2013":124,"2014":125,"2015":126,"2016":109,"2017":127,"2018":128,"2019":129,"2020":130,"2021":106,"2022":131,"2023":132,"2024":133},{"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":142,"2014":143,"2015":144,"2016":145,"2017":146,"2018":147,"2019":148,"2020":149,"2021":150,"2022":151,"2023":152,"2024":153},{"pages":1639,"volume":1641},{"VOID":1640},"95-100",{"VOID":711},{"total":19,"publishYear":1643,"statisticByYear":1644},2009,{},"2009-11-24","2026-07-16T20:55:19.016+00:00",[80,61],[1649,1652,1655,1658,1661,1664,1667,1670,1673,1676,1679,1685,1688,1691],{"id":18,"text":1650,"url":18,"identifiers":1651},"Doege E, Hütte H, Kröff A, Strache W (1998) Genauigkeit im Pressewerk-Teil1: Der überwachte Prozess. Blech Rohre Profile 6:46–51",{},{"id":18,"text":1653,"url":18,"identifiers":1654},"Bogon P (1997) Statische Genauigkeitskenngrößen von mechanischen Karosseriepressen. Blech Rohre Profile 6:44–51",{},{"id":18,"text":1656,"url":18,"identifiers":1657},"Schenk H, Wiehl K (1982) Messvorrichtung zur Ermittlung von Pressenkenndaten. VDI-Berichte Nr 450:125–130",{},{"id":18,"text":1659,"url":18,"identifiers":1660},"Brendel T (1980) Entwicklung eines Diagnosesystems für Umformmaschinen zur Erhöhung der Verfügbarkeit. Dissertation, Universität Hannover",{},{"id":18,"text":1662,"url":18,"identifiers":1663},"Behrens B-A, Javadi M (2007) Erweiterung der Kennwertermittlung durch eine automatische Belastungs- und Vermessungseinrichtung für Pressen der Blechverarbeitung. Final Report of the AiF Research Project 14252 N",{},{"id":18,"text":1665,"url":18,"identifiers":1666},"VDI 3145 Blatt 1 (1984) Pressen zum Kaltmassivumformen, Mechanische und hydraulische Pressen. Verein Deutscher Ingenieure",{},{"id":18,"text":1668,"url":18,"identifiers":1669},"DIN 8651 (1990) Werkzeugmaschinen, Mechanische Einständerpressen, Abnahmebedingungne. Beuth, Berlin",{},{"id":18,"text":1671,"url":18,"identifiers":1672},"DIN 55189 T.1 (1988) und T.2 (1988) Ermittlung von Kennwerten für Pressen der Blechverarbeitung. Beuth, Berlin",{},{"id":18,"text":1674,"url":18,"identifiers":1675},"Krüger K, Rühlicke I (1996) Hydraulische Prüfeinrichtung zur statischen und dynamischen Pressenuntersuchung. O + P Ölhydraulik und Pneumatik 40(2):126–130",{},{"id":18,"text":1677,"url":18,"identifiers":1678},"Behrens B-A, Brecher C, Hork M, Werbs M (2005) Entwicklung und Erweiterung standardisierter Messverfahren zur statischen und dynamischen Pressenvermessung. Final Report of the AiF Research Project 13742 N",{},{"id":1680,"text":1681,"url":1682,"identifiers":1683},"3106bf60-3b3d-4be1-ad25-a57dbaed12d6","Behrens B-A, Brecher C, Hork M, Werbs M (2007) New standardized procedure for the measurement of the static and dynamic properties of forming machines. Prod Eng Res Devel 1:31–36","http:\u002F\u002Flink.springer.com\u002F10.1007\u002Fs11740-007-0005-0",{"doi":1684},"10.1007\u002Fs11740-007-0005-0",{"id":18,"text":1686,"url":18,"identifiers":1687},"Träger M (2007) Untersuchung des Einflusses der Pressenelastizität auf den Einarbeitungsprozess von Karosseriewerkzeugen. Dissertation. utg München",{},{"id":18,"text":1689,"url":18,"identifiers":1690},"Stehle T (1998) Berechnung thermischer Verformungen und Verlagerungen an Werkzeugmaschinen und Möglichkeiten zur Kompensation. Dissertation, Universität Hannover",{},{"id":18,"text":1692,"url":18,"identifiers":1693},"Dehrental M (2009) Bewegung und Optimierung der thermischen Eigenschaften schnelllaufender Umformanlagen. Dissertation. Leibniz Universität Hannover",{},{"id":1695,"createTime":1696,"updateTime":1697,"relativeEntities":1698,"slug":1699,"properties":1700,"entityType":177,"verifyStatus":178,"verifyTime":1713,"verifyNote":180,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":1714,"fullTextUrl":18,"authors":1715,"publicationType":241,"publisherRelationship":1774,"citationCount":19,"citationInfo":1820,"publishDate":1822,"publishYear":293,"citationAnalyzeStatus":296,"lastCitationAnalyze":1823,"indexDatabases":1824,"openAccess":18,"references":18,"isForceReanalyzing":299},"7eacb91c-c86a-4b86-808e-676c68d6967d","2024-04-06T19:33:02.676+00:00","2026-07-12T22:50:00.462+00:00",[],"In-process-approach-for-editing-the-subsurface-properties-during-single-lip-deep-hole-drilling-using-a-sensor-integrated-tool",{"abstract":1701,"title":1703,"gsPaper":1705,"keywords":1707,"references":1709,"doi":1711},{"EN":1702},"Single-lip deep-hole drilling (SLD) is characterized by high surface quality and compressive residual stress in the subsurface of the drill hole. These properties depend significantly on the thermomechanical conditions in the machining process. The desired subsurface properties can be adjusted in-process via process monitoring near the cutting zone with a sensor-integrated tool and closed loop control when the thermomechanical conditions are maintained in the optimum range. In this paper, a method is presented to control the thermomechanical conditions to adjust the properties in the subsurface. The process model integrated in the controller is implemented as a soft sensor and takes into account the residual stresses, the roughness, the hardness and the grain size in the surface as well as in the subsurface depending on the process control variables, such as the feed rate and cutting speed. The correlation between the process variables, the thermomechanical conditions of the cutting process and the subsurface properties are investigated both experimentally and by finite element (FE) simulations. Within a justified process parameter range, characteristic fields for the soft sensor were established for each property. In addition, the procedure of controller design and the employed hardware and interfaces are presented.",{"EN":1704},"In-process approach for editing the subsurface properties during single-lip deep hole drilling using a sensor-integrated tool",{"VOID":1706},"[\"849648329830794080\"]",{"EN":1708},"",{"VOID":1710},"Biermann D, Bleicher F, Heisel U, Klocke F, Möhring H-C, Shih A (2018) Deep hole drilling. CIRP Ann 67(2):673–694. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.cirp.2018.05.007\nVDI 3210 (2014) Tiefbohrverfahren. Beuth Verlag, Berlin\nLöbbe H (2003) Tiefbohren auf bearbeitungszentren. Vulkan, Essen\nVDI 3208 (2014) Tiefbohren mit Einlippenbohrern, vol. 2014\nNickel J, Baak N, Walther F, Biermann D (2020) Influence of the feed rate in the single-lip deep hole drilling process on the surface integrity of steel components. In: Itoh S, Shukla S (eds) Lecture Notes in Mechanical Engineering, Advanced Surface Enhancement. Springer Singapore, pp 198–212.\nWittkop S (2007) Einlippentiefbohren nichtrostender Stähle. Vulkan, Essen\nEisseler R (2023) Erhöhung der Produktivität beim Einlippentiefbohren unter schwierigen Bedingungen. In: VDI Präzisions- und Tiefbohren aktuell: Technik - Tools - Trends, pp. 41–52.\nBrinksmeier E, Klocke F, Lucca DA, Sölter J, Meyer D (2014) Process signatures—a new approach to solve the inverse surface integrity problem in machining processes. Proc CIRP 13:429–434. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.procir.2014.04.073\nBrown M et al (2018) Destructive and non-destructive testing methods for characterization and detection of machining-induced white layer: a review paper. CIRP J Manuf Sci Technol 23:39–53. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.cirpj.2018.10.001\nUra-Bińczyk E (2021) Effect of grain refinement on the corrosion resistance of 316L stainless steel. Mater (Basel, Switzerl). https:\u002F\u002Fdoi.org\u002F10.3390\u002Fma14247517\nWang P, Ma L, Cheng X, Li X (2021) Influence of grain refinement on the corrosion behavior of metallic materials: a review. Int J Miner Metall Mater 28(7):1112–1126. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs12613-021-2308-0\nVacharanukul K, Mekid S (2005) In-process dimensional inspection sensors. Measurement 38(3):204–218. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.measurement.2005.07.009\nMöhring H-C, Wiederkehr P, Erkorkmaz K, Kakinuma Y (2020) Self-optimizing machining systems. CIRP Ann 69(2):740–763. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.cirp.2020.05.007\nMöhring H-C, Werkle K, Maier W (2020) Process monitoring with a cyber-physical cutting tool. Proc CIRP 93:1466–1471. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.procir.2020.03.034\nMöhring H-C, Werkle KT (2022) Lightweight semi-actively damped high performance milling tool. CIRP Ann 71(1):353–356. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.cirp.2022.04.051\nWegert R, Alhamede MA, Guski V, Schmauder S, Möhring H-C (2022) Sensor-integrated tool for self-optimizing single-lip deep hole drilling. IJAT 16(2):126–137. https:\u002F\u002Fdoi.org\u002F10.20965\u002Fijat.2022.p0126\nWegert R, et al. (2022) Prozessregelung beim Einlippentiefbohren\u002Fclosed loop control in single-lip deep-hole drilling. wt 112(11–12):750–756. https:\u002F\u002Fdoi.org\u002F10.37544\u002F1436-4980-2022-11-12-24.\nPatra K, Anand RS, Steiner M, Biermann D (2015) Experimental analysis of cutting forces in microdrilling of austenitic stainless steel (X5CrNi18-10). Mater Manuf Processes 30(2):248–255. https:\u002F\u002Fdoi.org\u002F10.1080\u002F10426914.2014.941867\nNickel J, Baak N, Volke P, Walther F, Biermann D (2021) Thermomechanical impact of the single-lip deep hole drilling on the surface integrity on the example of steel components. JMMP 5(4):120. https:\u002F\u002Fdoi.org\u002F10.3390\u002Fjmmp5040120\nRamme J, Wegert R, Guski V, Schmauder S, Moehring H-C (2022) Development of a multi-sensor concept for real-time temperature measurement at the cutting insert of a single-lip deep hole drilling Tool. Appl Sci 12(14):7095. https:\u002F\u002Fdoi.org\u002F10.3390\u002Fapp12147095\nMenze C, Wegert R, Reeber T, Erhardt F, Moehring H-C, Stegmann J (2021) Numerical methods for the simulation of segmented chips and experimental validation in machining of TI-6AL-4V. MM SJ 2021(5):5052–5060. https:\u002F\u002Fdoi.org\u002F10.17973\u002FMMSJ.2021_11_2021152\nDucobu F, Arrazola P-J, Rivière-Lorphèvre E, de Zarate GO, Madariaga A, Filippi E (2017) The CEL method as an alternative to the current modelling approaches for Ti6Al4V orthogonal cutting simulation. Proc CIRP 58:245–250. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.procir.2017.03.188\nKhochtali H, BenBelgacem I, Zemzemi F, Bensalem W (2021) Comparison of coupled eulerian-lagrangian and coupled smoothed particle hydrodynamics-lagrangian in fluid-structure interaction applied to metal cutting. Arab J Sci Eng 46(12):11923–11936. https:\u002F\u002Fdoi.org\u002F10.1007\u002Fs13369-021-05737-x\nPantalé O, Bacaria J-L, Dalverny O, Rakotomalala R, Caperaa S (2004) 2D and 3D numerical models of metal cutting with damage effects. Comput Methods Appl Mech Eng 193(39–41):4383–4399. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.cma.2003.12.062\nGuski V, Wegert R, Schmauder S, Möhring H-C (2022) Correlation between subsurface properties, the thermo-mechanical process conditions and machining parameters using the CEL simulation method. Procedia CIRP 108:100–105. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.procir.2022.03.021\nDennis JE, Welsch RE (1978) Techniques for nonlinear least squares and robust regression. Commun Stat Simul Comput 7(4):345–359. https:\u002F\u002Fdoi.org\u002F10.1080\u002F03610917808812083\nWegert R, Guski V, Schmauder S, Möhring H-C (2020) Effects on surface and peripheral zone during single lip deep hole drilling. Procedia CIRP 87:113–118. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.procir.2020.02.025\nBrnic J, Turkalj G, Canadija M, Lanc D, Brcic M (2015) Study of the effects of high temperatures on the engineering properties of Steel 42CrMo4. High Temp Mater Process. https:\u002F\u002Fdoi.org\u002F10.1515\u002Fhtmp-2014-0011\nJunge T, Mehner T, Nestler A, Schubert A, Lampke T (2022) Surface properties in turning of aluminum alloys applying different cooling strategies. Proc CIRP 108:246–251. https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.procir.2022.03.043\nHabschied M, de Graaff B, Klumpp A, Schulze V (2015) Fertigung und eigenspannungen*. HTM J Heat Treat Mater 70(3):111–121. https:\u002F\u002Fdoi.org\u002F10.3139\u002F105.110261",{"VOID":1712},"10.1007\u002Fs11740-024-01265-3","2024-05-10T09:27:03.909+00:00","https:\u002F\u002Flink.springer.com\u002Farticle\u002F10.1007\u002Fs11740-024-01265-3",[1716,1731,1746,1759],{"id":1717,"sortIndex":19,"researcher":18,"roles":1718,"affiliations":1719,"properties":1728},"1f128cf4-cff7-4b38-9e8f-0e163b650542",[186],[1720],{"id":1721,"sortIndex":19,"affiliation":1722,"properties":18},"3032c3fc-0789-4205-92d3-42c0ca1d7e98",{"id":1721,"createTime":18,"updateTime":18,"relativeEntities":1723,"slug":18,"properties":1724,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1727,"statistic":18},[],{"title":1725},{"VI":1726},"IfW, University of Stuttgart, Stuttgart, Germany",[],{"title":1729},{"VI":1730},"Robert Wegert",{"id":1732,"sortIndex":133,"researcher":18,"roles":1733,"affiliations":1734,"properties":1743},"1e6cebdb-e7eb-410d-8af2-7f7b491f9f7c",[186],[1735],{"id":1736,"sortIndex":19,"affiliation":1737,"properties":18},"843c06ec-1280-4775-b59f-ad85607508c8",{"id":1736,"createTime":18,"updateTime":18,"relativeEntities":1738,"slug":18,"properties":1739,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1742,"statistic":18},[],{"title":1740},{"VI":1741},"IMWF, University of Stuttgart, Stuttgart, Germany",[],{"title":1744},{"VI":1745},"Vinzenz Guski",{"id":1747,"sortIndex":146,"researcher":18,"roles":1748,"affiliations":1749,"properties":1756},"d2fd74c9-417d-4780-99e8-78ed7405917a",[186],[1750],{"id":1736,"sortIndex":19,"affiliation":1751,"properties":18},{"id":1736,"createTime":18,"updateTime":18,"relativeEntities":1752,"slug":18,"properties":1753,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1755,"statistic":18},[],{"title":1754},{"VI":1741},[],{"title":1757},{"VI":1758},"Siegfried Schmauder",{"id":1760,"sortIndex":227,"researcher":18,"roles":1761,"affiliations":1762,"properties":1769},"eec39edd-72ae-44ba-ae4a-17eb4aa374e4",[186],[1763],{"id":1721,"sortIndex":19,"affiliation":1764,"properties":18},{"id":1721,"createTime":18,"updateTime":18,"relativeEntities":1765,"slug":18,"properties":1766,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1768,"statistic":18},[],{"title":1767},{"VI":1726},[],{"title":1770,"gsAuthor":1772},{"VI":1771},"Hans-Christian Möhring",{"VOID":1773},"[\"DzcisM8AAAAJ\"]",{"url":18,"publisher":1775,"properties":18},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1776,"slug":10,"properties":1777,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":1780,"manageAffiliations":1789,"indexDatabases":1800,"url":18,"thumbnailPath":18,"statistic":1815,"gsStatistic":18,"type":155,"analyzePriority":18},[],{"issn":1778,"title":1779},{"VOID":13},{"VOID":15},[1781,1785],{"id":22,"createTime":18,"updateTime":18,"relativeEntities":1782,"label":1783,"description":1784,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":25},{},{"id":28,"createTime":18,"updateTime":18,"relativeEntities":1786,"label":1787,"description":1788,"parentId":18,"standard":18,"scholarHubFieldId":18},[],{"EN":31},{},[1790,1795],{"id":35,"createTime":18,"updateTime":18,"relativeEntities":1791,"slug":18,"properties":1792,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1794,"statistic":18},[],{"title":1793},{"EN":39},[41],{"id":43,"createTime":18,"updateTime":18,"relativeEntities":1796,"slug":18,"properties":1797,"entityType":18,"verifyStatus":18,"verifyTime":18,"verifyNote":18,"languages":18,"translateLanguages":18,"viewCount":18,"url":18,"parentIds":1799,"statistic":18},[],{"title":1798},{"EN":47},[41],[1801,1808],{"id":51,"indexDatabase":1802,"url":62,"indexYears":63,"academicFieldIds":1807,"indexDatabaseRanking":67},{"id":53,"createTime":18,"updateTime":18,"relativeEntities":1803,"label":1804,"description":1805,"key":59,"publicationTags":1806,"standard":18},[],{"EN":56,"VI":56},{"EN":56,"VI":58},[61],[65,66],{"id":69,"indexDatabase":1809,"url":82,"indexYears":18,"academicFieldIds":1814,"indexDatabaseRanking":18},{"id":71,"createTime":18,"updateTime":18,"relativeEntities":1810,"label":1811,"description":1812,"key":78,"publicationTags":1813,"standard":18},[],{"EN":74,"VI":74},{"EN":76,"VI":77},[80,81],[84],{"impactFactor":19,"impactFactorByYear":1816,"i10Index":98,"i10IndexLast5Year":99,"totalPublication":100,"totalPublicationByYear":1817,"totalCitation":116,"totalCitationByYear":1818,"totalCitationPerPublication":134,"totalCitationPerPublicationByYear":1819,"hindexLast5Year":154,"hindex":154},{"2012":87,"2013":88,"2014":89,"2015":90,"2016":91,"2017":92,"2018":93,"2019":94,"2020":95,"2021":89,"2022":96,"2023":97},{"2007":102,"2008":103,"2009":104,"2010":105,"2011":106,"2012":107,"2013":102,"2014":108,"2015":109,"2016":110,"2017":102,"2018":111,"2019":112,"2020":106,"2021":107,"2022":113,"2023":114,"2024":115},{"2007":118,"2008":119,"2009":120,"2010":121,"2011":122,"2012":123,"2013":124,"2014":125,"2015":126,"2016":109,"2017":127,"2018":128,"2019":129,"2020":130,"2021":106,"2022":131,"2023":132,"2024":133},{"2007":136,"2008":137,"2009":138,"2010":139,"2011":140,"2012":141,"2013":142,"2014":143,"2015":144,"2016":145,"2017":146,"2018":147,"2019":148,"2020":149,"2021":150,"2022":151,"2023":152,"2024":153},{"total":19,"publishYear":293,"statisticByYear":1821},{},"2024-02-19","2026-07-12T22:50:00.461+00:00",[80,61]]