[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"_public_publisher_byId_7ba04cc5-1cf5-46d4-9c23-43e5bff0268d":3,"_public_publication_all{\"sortAscending\":false,\"sortField\":\"updateTime\",\"page\":0,\"size\":10,\"facet\":true,\"searchKey\":\"publisherId:7ba04cc5-1cf5-46d4-9c23-43e5bff0268d,\"}":149},{"code":4,"data":5,"meta":23},"SUCCESS",{"id":6,"createTime":7,"updateTime":8,"relativeEntities":9,"slug":10,"properties":11,"entityType":21,"verifyStatus":22,"verifyTime":23,"verifyNote":24,"syncStatus":25,"languages":26,"translateLanguages":23,"viewCount":29,"subjectFields":30,"manageAffiliations":31,"indexDatabases":119,"url":120,"thumbnailPath":121,"statistic":122,"gsStatistic":23,"type":23,"analyzePriority":23},"7ba04cc5-1cf5-46d4-9c23-43e5bff0268d","2023-09-12T07:03:05.260+00:00","2025-10-14T00:42:21.812+00:00",[],"T%E1%BA%A1p-ch%C3%AD-K%E1%BB%B9-thu%E1%BA%ADt-v%C3%A0-C%C3%B4ng-ngh%E1%BB%87-%C4%90%E1%BA%A1i-h%E1%BB%8Dc-Qu%E1%BB%91c-gia-Th%C3%A0nh-ph%E1%BB%91-H%E1%BB%93-Ch%C3%AD-Minh",{"country":12,"issn":14,"introduce":16,"title":18},{"VOID":13},"VN",{"VOID":15},"26159872",{"EN":17},"{\"ops\":[{\"attributes\":{\"bold\":true},\"insert\":\"1. History\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"Science and Technology Development Journal\"},{\"insert\":\" (STDJ), Vietnam National University - Ho Chi Minh City (VNU-HCM) was established in 1997. And the first issue was published in January 1998 with ISSN 1859-0128. Since then, STDJ has become the most important scientific forum of scientists from VNU-HCM as well as other universities. The magazine has undergone 20 years of development and has become a bridge for scientific exchanges, as well as enriching reference materials for the faculty, doctoral students, students of VNU-HCM in particular and other universities, institutes...\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\\n\"},{\"insert\":\"By the end of 2016, the journal has published 276 issues with 2714 research articles in five areas of research: Engineering and Technology, Natural Sciences, Social Sciences and Humanities, Economics of Law and Management Sciences, Earth Sciences and Environment corresponding to 5 specialized journals of the Journal.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"The journal has been widely indexed in the various libraries at Vietnam. To increase the international audiences, STDJ will be published fulltexts in English from Vol 21 (2018).\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\" \"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"attributes\":{\"bold\":true},\"insert\":\"2. Focus and Scope\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"The Journal is not limited to a specific aspect of  engineering Technology but is instead devoted to a wide range of subfields in the engineering sciences. While it encourages a broad spectrum of contribution in the engineering sciences, its core interest lies in issues concerning material modeling and response: Mechanical Engineering; Electrical & Electronics Engineering; Petroleum Engineering; Chemical Engineering; Systems Engineering; Process Engineering; Agriculture Engineering; Aerospace Engineering; Applied Engineering; Interdisciplinary.\"},{\"attributes\":{\"align\":\"justify\"},\"insert\":\"\\n\"},{\"insert\":\"\\n\"}]}",{"EN":19,"VI":20},"VNUHCM JOURNAL OF ENGINEERING AND TECHNOLOGY","Tạp chí Kỹ thuật và Công nghệ Đại học Quốc gia Thành phố Hồ Chí Minh","PUBLISHER","VERIFIED",null,"Admin update database","PENDING",[27,28],"VI","EN",47,[],[32],{"id":33,"createTime":34,"updateTime":35,"relativeEntities":36,"slug":37,"properties":38,"entityType":48,"verifyStatus":22,"verifyTime":49,"verifyNote":23,"syncStatus":25,"languages":50,"translateLanguages":23,"viewCount":51,"url":52,"parentIds":53,"statistic":54},"fc4c2560-868c-4677-acb1-8686bef88727","2023-06-26T04:48:23.774+00:00","2026-06-19T01:46:17.248+00:00",[],"%C4%90%E1%BA%A1i-h%E1%BB%8Dc-Qu%E1%BB%91c-gia-Th%C3%A0nh-ph%E1%BB%91-H%E1%BB%93-Ch%C3%AD-Minh",{"country":39,"title":40,"abbreviation":43,"address":45},{"VOID":13},{"EN":41,"VI":42},"Vietnam National University Ho Chi Minh City","Đại học Quốc gia Thành phố Hồ Chí Minh",{"VOID":44},"VNUHCM",{"VI":46,"EN":47},"khu phố 6, Phường Linh Trung, Thành phố Thủ Đức, Thành phố Hồ Chí Minh, Việt Nam","Quarter 6, Linh Trung Ward, Thu Duc City, Ho Chi Minh City, Vietnam","AFFILIATION","2023-08-16T14:13:07.134+00:00",[27,28],45,"https:\u002F\u002Fvnuhcm.edu.vn\u002F",[],{"impactFactor":55,"impactFactorByYear":56,"i10Index":63,"i10IndexLast5Year":64,"totalPublication":65,"totalPublicationByYear":66,"totalCitation":87,"totalCitationByYear":88,"totalCitationPerPublication":103,"totalCitationPerPublicationByYear":104,"hindexLast5Year":118,"hindex":118},0,{"2014":55,"2015":57,"2016":58,"2017":59,"2018":60,"2019":57,"2020":61,"2021":62,"2022":61,"2023":61,"2024":62,"2025":60},0.01,0.05,0.03,0.02,0.07,0.08,34,15,3708,{"2005":67,"2006":67,"2007":67,"2008":68,"2009":69,"2010":70,"2011":71,"2012":72,"2013":73,"2014":74,"2015":75,"2016":76,"2017":77,"2018":78,"2019":79,"2020":80,"2021":81,"2022":82,"2023":83,"2024":84,"2025":85,"2026":86},1,6,4,11,9,69,164,185,266,236,177,132,226,603,931,314,246,74,37,8,2399,{"2006":67,"2008":86,"2010":89,"2011":90,"2012":91,"2013":92,"2014":93,"2015":94,"2016":95,"2017":96,"2018":97,"2019":98,"2020":99,"2021":100,"2022":101,"2023":102,"2024":67},5,20,27,63,250,124,157,162,97,152,385,559,128,93,0.65,{"2006":67,"2008":105,"2010":106,"2011":107,"2012":108,"2013":109,"2014":110,"2015":111,"2016":112,"2017":113,"2018":114,"2019":112,"2020":115,"2021":116,"2022":117,"2023":109,"2024":57},1.33,0.45,2.22,0.39,0.38,1.35,0.47,0.67,0.92,0.73,0.64,0.6,0.41,17,[],"http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet","\u002Fapi\u002Fpublic\u002Ffile\u002Fpublisher\u002F7ba04cc5-1cf5-46d4-9c23-43e5bff0268d\u002F3a1876174d0eb93a5ae8b1a34de436ad.png",{"impactFactor":55,"impactFactorByYear":123,"i10Index":69,"i10IndexLast5Year":128,"totalPublication":129,"totalPublicationByYear":130,"totalCitation":136,"totalCitationByYear":137,"totalCitationPerPublication":142,"totalCitationPerPublicationByYear":143,"hindexLast5Year":148,"hindex":148},{"2020":61,"2021":124,"2022":125,"2023":126,"2024":127},0.19,0.25,0.21,0.14,3,409,{"2019":51,"2020":131,"2021":132,"2022":133,"2023":134,"2024":135},110,98,51,89,16,268,{"2019":138,"2020":139,"2021":140,"2022":141,"2023":90},48,84,95,21,0.66,{"2019":144,"2020":145,"2021":146,"2022":117,"2023":147},1.07,0.76,0.97,0.22,7,{"meta":150,"data":152},{"total":151},"448",[153,274,353,464,597,709,857,984,1053,1157],{"id":154,"createTime":155,"updateTime":156,"relativeEntities":157,"slug":158,"properties":159,"entityType":170,"verifyStatus":22,"verifyTime":171,"verifyNote":172,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55,"primaryUrl":173,"fullTextUrl":174,"authors":175,"publicationType":244,"publisherRelationship":245,"citationCount":55,"citationInfo":268,"publishDate":270,"publishYear":271,"citationAnalyzeStatus":272,"lastCitationAnalyze":156,"indexDatabases":23,"openAccess":23,"references":23,"isForceReanalyzing":273},"abfb584a-556a-4e69-999c-1c3c63337ae2","2023-09-14T13:07:00.172+00:00","2026-06-17T23:58:29.168+00:00",[],"Applying-improved-Backward-Forward-method-in-optimizing-power-distribution-connected-DG",{"gsPaper":160,"keywords":162,"abstract":164,"title":166,"doi":168},{"VOID":161},"8641627505698055154",{"EN":163},"Newton-Graphson,Gauss-Seidel,DG,Backward\u002FForward,Power distribution system",{"EN":165},"In recent years, there is robust development of distributed generations (DG) connected into the electrical system. Thus, The issues such as the optimization problem of the position and capacity of power distribution sources has taken into account the re-configuration on the electricity distribution system to minimize the total Power loss on the ray distribution grid as well as minimizing the total calculation time which is an essential requirement. This paper proposes enhancement Backward\u002FForward method which is change for Newton - Graphson and Gauss - Seidel methods are being used. We used PSO optimization algorithm accompanied by power distribution calculation tool which is Backward\u002FForward method to calculate the power distribution in the optimsize location and capacitance of Distributed Generations considering the re-configuration of the electrolytic grid. The algorithm has been simulated on three IEEE ray power distribution systems which includes 3 types of power grids: 33-node power distribution system, 69 nodes and 119 nodes. Simulation result presents that our proposal improves the performance of distribution grid system and better than some other algorithms.",{"VI":167},"Applying improved Backward\u002FForward method in optimizing power distribution connected DG",{"VOID":169},"10.15419\u002Fstdjet.v2i2.499","PUBLICATION","2023-09-14T13:07:00.171+00:00","155157","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fview\u002F499","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fdownload\u002F499\u002F848",[176,205,224],{"id":177,"sortIndex":55,"researcher":23,"roles":178,"affiliations":179,"properties":200},"bc5d4db8-586c-46fe-b578-03aec3b173f2",[],[180],{"id":181,"sortIndex":55,"affiliation":182,"properties":197},"9202895d-5f17-48ed-9e11-d3197f03598a",{"id":183,"createTime":184,"updateTime":185,"relativeEntities":186,"slug":187,"properties":188,"entityType":48,"verifyStatus":22,"verifyTime":195,"verifyNote":23,"syncStatus":25,"languages":196,"translateLanguages":23,"viewCount":64},"5dd5490a-8b27-4a4d-9041-9fff2c5d1916","2023-06-26T04:28:44.904+00:00","2026-06-19T02:30:13.985+00:00",[],"Tr%C6%B0%E1%BB%9Dng-%C4%90%E1%BA%A1i-h%E1%BB%8Dc-S%C6%B0-ph%E1%BA%A1m-K%E1%BB%B9-thu%E1%BA%ADt-Th%C3%A0nh-ph%E1%BB%91-H%E1%BB%93-Ch%C3%AD-Minh",{"country":189,"title":190,"abbreviation":193},{"VOID":13},{"EN":191,"VI":192},"HCMC University of Technology and Education","Trường Đại học Sư phạm Kỹ thuật Thành phố Hồ Chí Minh",{"VOID":194},"HCMUET","2023-08-17T14:54:42.672+00:00",[27,28],{"title":198},{"VI":199},"HCMC University of Technology and Education, Ho Chi Minh City",{"gsAuthor":201,"title":203},{"VOID":202},"qW6LEPQAAAAJ",{"VI":204},"Anh Viet Truong",{"id":206,"sortIndex":55,"researcher":23,"roles":207,"affiliations":208,"properties":221},"4b026ead-d916-4256-8ae4-f407887da446",[],[209],{"id":210,"sortIndex":55,"affiliation":211,"properties":219},"c94999c6-5123-41dc-a4b9-94109f1f6ec2",{"id":33,"createTime":34,"updateTime":35,"relativeEntities":212,"slug":37,"properties":213,"entityType":48,"verifyStatus":22,"verifyTime":49,"verifyNote":23,"syncStatus":25,"languages":218,"translateLanguages":23,"viewCount":51},[],{"country":214,"title":215,"abbreviation":216,"address":217},{"VOID":13},{"EN":41,"VI":42},{"VOID":44},{"VI":46,"EN":47},[27,28],{"title":220},{"VI":41},{"title":222},{"VI":223},"Tu Phan Vu",{"id":225,"sortIndex":55,"researcher":23,"roles":226,"affiliations":227,"properties":239},"53991a6e-ea9e-41ea-9ac9-7f8bab06ad3d",[],[228],{"id":229,"sortIndex":55,"affiliation":230,"properties":237},"781e8445-46eb-432e-b8c1-4e58889ee5d1",{"id":183,"createTime":184,"updateTime":185,"relativeEntities":231,"slug":187,"properties":232,"entityType":48,"verifyStatus":22,"verifyTime":195,"verifyNote":23,"syncStatus":25,"languages":236,"translateLanguages":23,"viewCount":64},[],{"country":233,"title":234,"abbreviation":235},{"VOID":13},{"EN":191,"VI":192},{"VOID":194},[27,28],{"title":238},{"VI":199},{"gsAuthor":240,"title":242},{"VOID":241},"gLa2D4sAAAAJ",{"VI":243},"Trieu Ngoc Ton","ARTICLE",{"url":173,"publisher":246,"properties":262},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":247,"slug":10,"properties":248,"entityType":21,"verifyStatus":22,"verifyTime":23,"verifyNote":24,"syncStatus":25,"languages":253,"translateLanguages":23,"viewCount":29,"subjectFields":254,"manageAffiliations":255,"indexDatabases":256,"url":120,"thumbnailPath":121,"statistic":257,"gsStatistic":23,"type":23,"analyzePriority":23},[],{"country":249,"issn":250,"introduce":251,"title":252},{"VOID":13},{"VOID":15},{"EN":17},{"EN":19,"VI":20},[27,28],[],[],[],{"impactFactor":55,"impactFactorByYear":258,"i10Index":69,"i10IndexLast5Year":128,"totalPublication":129,"totalPublicationByYear":259,"totalCitation":136,"totalCitationByYear":260,"totalCitationPerPublication":142,"totalCitationPerPublicationByYear":261,"hindexLast5Year":148,"hindex":148},{"2020":61,"2021":124,"2022":125,"2023":126,"2024":127},{"2019":51,"2020":131,"2021":132,"2022":133,"2023":134,"2024":135},{"2019":138,"2020":139,"2021":140,"2022":141,"2023":90},{"2019":144,"2020":145,"2021":146,"2022":117,"2023":147},{"volume":263,"pages":265,"issue":267},{"VOID":264},"2",{"VOID":266},"105-115",{"VOID":264},{"total":55,"publishYear":55,"statisticByYear":269},{},"2019-09-11",2019,"DONE_ANALYZE_CITATION",false,{"id":275,"createTime":276,"updateTime":277,"relativeEntities":278,"slug":279,"properties":280,"entityType":170,"verifyStatus":22,"verifyTime":289,"verifyNote":172,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":67,"primaryUrl":290,"fullTextUrl":291,"authors":292,"publicationType":244,"publisherRelationship":327,"citationCount":23,"citationInfo":23,"publishDate":351,"publishYear":352,"citationAnalyzeStatus":25,"lastCitationAnalyze":277,"indexDatabases":23,"openAccess":23,"references":23,"isForceReanalyzing":273},"9016d617-36bd-43f3-b28c-20d02da5345d","2023-09-14T10:40:50.634+00:00","2025-09-10T23:57:54.134+00:00",[],"Optimization-of-process-lability-in-logistics-systems",{"gsPaper":281,"abstract":283,"title":285,"doi":287},{"VOID":282},"9469437888312579794",{"EN":284},"The management and effective operation of enterprise systems – depending on ever-changing environmental impacts – can only be achieved by an appropriate information management practice. Today, in the corporate environment, an astonishing amount of data (often unstructured) is generated. The efficient processing of these data is by no means straightforward and unambiguous, and thus presents significant challenges for user systems. It is typical of the process that the customer would like to receive the product as soon as possible, but at least at a pre-determined time. Thus the quality of service is determined not only by the quality of the product but also by its availability. As is well known, the mission of logistics is to ensure the ordered product is delivered in the right time, place, quality, quantity and cost. In this mission has a specific product, finite duration, organizational structure with defined responsibilities, activities necessary for its production, and have the resources to carry out these activities. The processing of the product is divided into several stages, which form a separate unit from the managerial point of view. Like product procession, a section has specific products, activities, and organizational structure. The end of the phase is the production \u002F implementation of the products \u002F services specified therein, provided that they meet the required quality criteria. In our paper, we propose a methodology, which – together with the related mathematical model – can offer an opportunity to reduce entropy in logistics processes. The aim of the research is to develop a model that can be used to quantify the logistical process uncertainty. We believe that research will help find a way to overcome the shortcomings of current process management procedures. We give the formal description of the mathematical model and present an example of its application.",{"VI":286},"Optimization of process lability in logistics systems",{"VOID":288},"10.32508\u002Fstdjet.v3iSI3.743","2023-09-14T10:40:50.633+00:00","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fview\u002F743","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fdownload\u002F743\u002F974",[293,310],{"id":294,"sortIndex":55,"researcher":23,"roles":295,"affiliations":296,"properties":305},"e998d0b4-137c-4e76-97c2-22cfb985e6ee",[],[297],{"id":23,"sortIndex":55,"affiliation":298,"properties":23},{"id":299,"createTime":300,"updateTime":300,"relativeEntities":301,"slug":23,"properties":302,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},"18219b88-12cb-4856-a706-de8a358e9d6a","2023-12-27T00:58:02.486+00:00",[],{"title":303},{"VI":304},"Széchenyi István University, Hungary",{"gsAuthor":306,"title":308},{"VOID":307},"r7crbhAAAAAJ",{"VI":309},"Csaba Imre Hencz",{"id":311,"sortIndex":55,"researcher":23,"roles":312,"affiliations":313,"properties":322},"719faed0-b6a3-4632-b51f-918981a4d88a",[],[314],{"id":315,"sortIndex":55,"affiliation":316,"properties":320},"d7f47e9e-d22d-423f-9973-a5f8f75585e4",{"id":299,"createTime":300,"updateTime":300,"relativeEntities":317,"slug":23,"properties":318,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},[],{"title":319},{"VI":304},{"title":321},{"VI":304},{"gsAuthor":323,"title":325},{"VOID":324},"11VbCXMAAAAJ",{"VI":326},"Tamás Hartványi",{"url":290,"publisher":328,"properties":344},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":329,"slug":10,"properties":330,"entityType":21,"verifyStatus":22,"verifyTime":23,"verifyNote":24,"syncStatus":25,"languages":335,"translateLanguages":23,"viewCount":29,"subjectFields":336,"manageAffiliations":337,"indexDatabases":338,"url":120,"thumbnailPath":121,"statistic":339,"gsStatistic":23,"type":23,"analyzePriority":23},[],{"country":331,"issn":332,"introduce":333,"title":334},{"VOID":13},{"VOID":15},{"EN":17},{"EN":19,"VI":20},[27,28],[],[],[],{"impactFactor":55,"impactFactorByYear":340,"i10Index":69,"i10IndexLast5Year":128,"totalPublication":129,"totalPublicationByYear":341,"totalCitation":136,"totalCitationByYear":342,"totalCitationPerPublication":142,"totalCitationPerPublicationByYear":343,"hindexLast5Year":148,"hindex":148},{"2020":61,"2021":124,"2022":125,"2023":126,"2024":127},{"2019":51,"2020":131,"2021":132,"2022":133,"2023":134,"2024":135},{"2019":138,"2020":139,"2021":140,"2022":141,"2023":90},{"2019":144,"2020":145,"2021":146,"2022":117,"2023":147},{"volume":345,"pages":347,"issue":349},{"VOID":346},"3",{"VOID":348},"SI29-SI35",{"VOID":350},"SI3","2020-12-31",2020,{"id":354,"createTime":355,"updateTime":356,"relativeEntities":357,"slug":358,"properties":359,"entityType":170,"verifyStatus":22,"verifyTime":370,"verifyNote":172,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":128,"primaryUrl":371,"fullTextUrl":372,"authors":373,"publicationType":244,"publisherRelationship":437,"citationCount":23,"citationInfo":23,"publishDate":461,"publishYear":462,"citationAnalyzeStatus":25,"lastCitationAnalyze":463,"indexDatabases":23,"openAccess":23,"references":23,"isForceReanalyzing":273},"f96dd822-a3f8-48a6-8168-a0dec35b0a24","2023-09-14T13:43:16.212+00:00","2026-01-26T23:50:05.349+00:00",[],"Encapsulation-of-Gac-oil-in-alginate-bead-by-dripping-method",{"gsPaper":360,"keywords":362,"abstract":364,"title":366,"doi":368},{"VOID":361},"15402336631233139865",{"EN":363},"Alginate bead, Beta-carotene stability, Dripping method, Gac oil encapsulation",{"EN":365},"Gac oil was encapsulated in the hydrogel bead using alginate as carrying material by dripping method. Different parameters of all three stages of the encapsulation process were investigated: alginate concentration (emulsification stage), nozzle height, extruded pressure (bead formation stage) and calcium flow rate (bead stabilisation stage). Gac oil emulsion was characterised through the droplet’s size and emulsion stability. Bead’s morphology including size and shape was evaluated by image analysis using ImageJ software. Encapsulation efficiency was evaluated through encapsulated Gac oil and beta-carotene stability during storage at room temperature during 8 weeks. The beta-carotene content was determined through spectrometric absorbance in n-hexane at 452 nm. Results show that alginate is suitable to use as carrying material for Gac oil encapsulation with a moderate encapsulation efficiency of 62.5 ± 0.8 %. Gac oil emulsion had a droplet’s size in range 1-2 m and showed a good stability at low alginate concentration. The bead’s morphology was highly affected by the height of nozzle and the extruded pressure while the flow rate of gelling solution expressed no influence of the bead’s morphology. The most spherical bead and the biggest bead’s diameter were obtained with the lowest distance at 150 mm and the lowest pressure at 2 MPa. A smaller size but more irregular shape can be obtained with the higher distances and higher pressures. A progressive decrease in beta-carotene content during storage was observed for both bead’s surficial and total level. The degradation of beta-carotene in Gac oil bead fitted the first-order reaction with degradation rate constant k of 0.0020 day-1 and a hafl-life t1\u002F2 equal to 347 days which show a good stabiltity of Gac oil in alginate bead.",{"VI":367},"Encapsulation of Gac oil in alginate bead by dripping 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Trang University","Trường Đại học Nha Trang",{"VI":392,"EN":393},"Số 2 đường Nguyễn Đình Chiểu, phường Vĩnh Thọ, thành phố Nha Trang, tỉnh Khánh Hòa, Việt Nam","2 Nguyen Dinh Chieu street, Vinh Tho ward, Nha Trang city, Khanh Hoa provine Viet Nam","2023-09-18T09:03:25.465+00:00",[27,28],{"title":397},{"VI":398},"Nha Trang University, Nha Trang, Vietnam",{"title":400},{"VI":401},"Khánh Thị 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factor erythroid 2–related factor 2 (Nrf2) is vital in regulating cellular defenses against oxidative or environmental aggressors. Some studies reveal that increasing Nrf2 activity affects chemotherapy drug resistance in cancer; thus, Nrf2 has become an attractive target in cancer therapeutics research. Our study screened the effects of 52 methanol extracts from different parts of 24 medicinal plants used in traditional and folk medicine to evaluate the ability to inhibit Nrf2 and the cell viability by an in vitro model of Huh7 liver cancer cells at the crude extract concentration of 100 µg\u002FmL. The study has successfully suggested a screening model for Nrf2 expression based on luciferase fluorescence assay of Huh7 cells transfected with the Nrf2 gene. The results of our study show that the Piper sarmentosum roots can inhibit nearly 90% of Nrf2 activity in cancer cells. We also found that the extracts of Vernonia amygdalina leaves, Phyllanthus amarus leaves, Zingiber zerumbet leaves, Hyptis suaveolens leaves and roots, Curcuma zedoaria leaves and roots, Luvunga scandens leaves, Helicteres hirsuta leaves, Oroxylum indicum stem and leaves, Lasia spinosa fruits and Crotalaria pallida leaves inhibited more than 60% of Nrf2 expression levels. Furthermore, the extracts from the leaves of Luvunga scandens and Curcuma zedoaria can cause toxicity on cancer cell of more than 70% at 100 µg\u002FmL. From the study, we have the basis for further studies on natural active substances that have the effect of drug resistance by inhibiting the expression of Nrf2 on cancer cells.",{"EN":476},"Screening for in vitro inhibiting Nrf2 of some Vietnamese medicinal plants",{"VOID":478},"10.32508\u002Fstdjet.v6i3.1098","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fview\u002F1098","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fdownload\u002F1098\u002F1286",[482,498,512,527,543,558],{"id":483,"sortIndex":128,"researcher":23,"roles":484,"affiliations":486,"properties":495},"5fccafdb-384f-4992-8a3d-7678060c58c4",[485],"AUTHOR",[487],{"id":23,"sortIndex":55,"affiliation":488,"properties":23},{"id":489,"createTime":490,"updateTime":490,"relativeEntities":491,"slug":23,"properties":492,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},"18b737d0-55db-44c1-9c26-31e5815bde70","2024-01-21T11:22:32.338+00:00",[],{"title":493},{"VI":494},"School of Medicine, Vietnam National University Ho Chi Minh City, Viet Nam",{"title":496},{"VI":497},"Hoa Thanh Vo",{"id":499,"sortIndex":55,"researcher":23,"roles":500,"affiliations":501,"properties":507},"1bb2ef12-3cce-46d8-a848-bd5b995f1672",[485],[502],{"id":23,"sortIndex":55,"affiliation":503,"properties":23},{"id":489,"createTime":490,"updateTime":490,"relativeEntities":504,"slug":23,"properties":505,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},[],{"title":506},{"VI":494},{"gsAuthor":508,"title":510},{"VOID":509},"w8gr4UwAAAAJ",{"VI":511},"Hien Minh Nguyen",{"id":513,"sortIndex":69,"researcher":23,"roles":514,"affiliations":515,"properties":524},"2cc91e6f-4e00-4cfd-ac15-ea463a3dc9d9",[485],[516],{"id":23,"sortIndex":55,"affiliation":517,"properties":23},{"id":518,"createTime":519,"updateTime":519,"relativeEntities":520,"slug":23,"properties":521,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},"93a68e60-7b1d-4034-a5e0-3a980d479360","2024-01-21T11:22:32.352+00:00",[],{"title":522},{"VI":523},"Faculty of Applied Science, Ho Chi Minh City University of Technology, Vietnam National University Ho Chi Minh City, Viet Nam",{"title":525},{"VI":526},"Thi Tan Pham",{"id":528,"sortIndex":529,"researcher":23,"roles":530,"affiliations":531,"properties":540},"df8937fa-c087-4692-88bc-2eef78ab61f1",2,[485],[532],{"id":23,"sortIndex":55,"affiliation":533,"properties":23},{"id":534,"createTime":535,"updateTime":535,"relativeEntities":536,"slug":23,"properties":537,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},"8f26b9c4-7794-401a-a7dd-6825d06afa3a","2024-01-21T11:22:32.326+00:00",[],{"title":538},{"VI":539},"School of Medicine, Vietnam National University Ho Chi Minh City, Viet Nam; Faculty of Applied Science, Ho Chi Minh City University of Technology, Vietnam National University Ho Chi Minh City, Viet Nam",{"title":541},{"VI":542},"Nhi Thi Yen Nguyen",{"id":544,"sortIndex":89,"researcher":23,"roles":545,"affiliations":546,"properties":555},"f53bea90-5945-419a-8c62-209e942dffc9",[485],[547],{"id":23,"sortIndex":55,"affiliation":548,"properties":23},{"id":549,"createTime":550,"updateTime":550,"relativeEntities":551,"slug":23,"properties":552,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},"c9f93bfe-febd-405a-8ee8-e3df923aa06f","2024-01-21T11:22:32.363+00:00",[],{"title":553},{"VI":554},"Graduate Institute of Natural Products, School of Pharmacy, Kaohsiung Medical University, Taiwan",{"title":556},{"VI":557},"Chia-Hung Yen",{"id":559,"sortIndex":67,"researcher":23,"roles":560,"affiliations":561,"properties":567},"90df4935-f382-4de1-b51b-65e61e97c219",[485],[562],{"id":23,"sortIndex":55,"affiliation":563,"properties":23},{"id":489,"createTime":490,"updateTime":490,"relativeEntities":564,"slug":23,"properties":565,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},[],{"title":566},{"VI":494},{"title":568},{"VI":569},"Han Nguyen Thien Le",{"url":479,"publisher":571,"properties":587},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":572,"slug":10,"properties":573,"entityType":21,"verifyStatus":22,"verifyTime":23,"verifyNote":24,"syncStatus":25,"languages":578,"translateLanguages":23,"viewCount":29,"subjectFields":579,"manageAffiliations":580,"indexDatabases":581,"url":120,"thumbnailPath":121,"statistic":582,"gsStatistic":23,"type":23,"analyzePriority":23},[],{"country":574,"issn":575,"introduce":576,"title":577},{"VOID":13},{"VOID":15},{"EN":17},{"EN":19,"VI":20},[27,28],[],[],[],{"impactFactor":55,"impactFactorByYear":583,"i10Index":69,"i10IndexLast5Year":128,"totalPublication":129,"totalPublicationByYear":584,"totalCitation":136,"totalCitationByYear":585,"totalCitationPerPublication":142,"totalCitationPerPublicationByYear":586,"hindexLast5Year":148,"hindex":148},{"2020":61,"2021":124,"2022":125,"2023":126,"2024":127},{"2019":51,"2020":131,"2021":132,"2022":133,"2023":134,"2024":135},{"2019":138,"2020":139,"2021":140,"2022":141,"2023":90},{"2019":144,"2020":145,"2021":146,"2022":117,"2023":147},{"volume":588,"pages":590,"issue":592},{"VOID":589},"6",{"VOID":591},"In press",{"VOID":346},{"total":67,"publishYear":594,"statisticByYear":595},2023,{},"2023-10-15",{"id":598,"createTime":599,"updateTime":600,"relativeEntities":601,"slug":602,"properties":603,"entityType":170,"verifyStatus":22,"verifyTime":612,"verifyNote":172,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":529,"primaryUrl":613,"fullTextUrl":614,"authors":615,"publicationType":244,"publisherRelationship":682,"citationCount":55,"citationInfo":705,"publishDate":708,"publishYear":706,"citationAnalyzeStatus":25,"lastCitationAnalyze":600,"indexDatabases":23,"openAccess":23,"references":23,"isForceReanalyzing":273},"6522a09e-be82-48d8-b083-017e15a17358","2023-09-14T11:28:46.951+00:00","2026-04-14T23:44:43.756+00:00",[],"Deformation-behaviour-of-granular-column-reinforced-by-geosynthetic-encasement",{"gsPaper":604,"abstract":606,"title":608,"doi":610},{"VOID":605},"15141901594303849118",{"EN":607},"In Vietnam, the overpopulation and strong economic development require the synchronous development of infrastructure such as roads, urban areas, industrial parks, export processing zones, etc. With such requirements, the development of land fund for infrastructure construction is an indispensable need. Meanwhile, the appropriate land fund is very limited. Therefore, the land fund must be developed for areas with little value for agriculture, such as swamps, estuaries, and coastal areas, etc. These areas often have weak geological conditions; hence, to meet the requirements of infrastructure construction on the soft ground, it is necessary to carry out soil improvement to ensure load bearing capacity, total settlement, and consolidation settlement but still ensuring economic effectiveness. Beside several conventional methods widely used for soft soil improvement in order to increase bearing capacity and accelerate consolidation settlement of the ground, geosynthetic reinforced granular column is one of the new methods that has been applied to improving soft ground in designing practice in the recent years due to the many advantages of this method compared with other methods. In this paper, based on the unit cell model, the authors research on deformation behavior of granular column reinforced by geosynthetic encasement through the analytical analysis by varying external loadings corresponding to column diameter, stiffness of geosynthetic encasement. The settlements of a single geosynthetic encased granular column and load bearing capacity of the composite foundation are calculated on geological conditions of Ash Pond Area of Song Hau 1 Thermal Power Plant located in Hau Giang Province. The relationship between settlement and load bearing capacity with external loadings for different column diameters and geosynthetic stiffnesses are shown schematically. Other considerations related to factor of safety are also presented. The future researches are also proposed.",{"EN":609},"Deformation behaviour of granular column reinforced by geosynthetic 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quy; bã mía; chất xơ; tỉ lệ bổ sung.",{"EN":721},"Nowadays, sugarcane is used as main material to manufacture crystal sucrose and packaged sugarcane juice. The sucrose production generates sugarcane bagasse with sugarcane peel while the sugarcane juice production releases sugarcane bagasse without its peel. There have been many reports on the use of sugarcane bagasse with peel to produce various value-added products. Nevertheless, the application of sugarcane bagasse without peel to food processing has not been widely considered. In this study, the peeled bagasse from the sugarcane juice manufacturing process was employed as a dietary fiber source. The peeled bagasse was dried, ground, sifted and added to the biscuit formulation; the supplementation ratio was 0 (control), 5, 10, 15 and 20% (w\u002Fw) of the blend of wheat flour and sugarcane bagasse. Increase in sugarcane bagasse ratio reduced the protein content of the biscuit but improved its soluble and insoluble dietary fiber and ash contents. Use of sugarcane bagasse did not dramatically alter diameter and thickness of the biscuit but significantly increased its hardness and brightness. The biscuit samples with 5, 10 and 15% sugarcane bagasse powder were considered as high-fiber food products and had similar overall acceptability to the control sample. The peeled sugarcane bagasse powder can be a potential source of dietary fiber in the production of fiber-rich biscuits.",{"VI":723},"Use of wheat flour and sugarcane bagasse in the production of fiber-rich biscuit: Effects of sugarcane bagasse ratio on the product 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algorithm,contact force,impact,MPM",{"EN":869},"In the MPM algorithm, all the particles are formulated in a single-valued velocity field hence the non-slip contact can be satisfied without any contact treatment. However, in some impact and penetration problems, the non-slip contact condition is not appropriate and may even yield unreasonable results, so it is important to overcome this drawback by using a contact algorithm in the MPM. In this paper, the variation of contact force with respect to time caused by the impact is investigated. The MPM using the Lagrange basis function, so causing the cell-crossing phenomenon when a particle moves from one cell to another. The essence of this phenomenon is due to the discontinuity of the gradient of the linear basis function. The accuracy of the results is therefore also affected. The high order B-spline MPM is used in this study to overcome the cell-crossing error. The BSMPM uses higher-order B-spline functions to make sure the derivatives of the shape functions are continuous, so that alleviate the error. The algorithm of MPM and BSMPM has some differences in defining the computational grid. Hence, the original contact algorithm in MPM needs to be modified to be suitable in order to use in the BSMPM. The purpose of this study is to construct a suitable contact algorithm for BSMPM and then use it to investigate the contact force caused by impact. Some numerical examples are presented in this paper, the impact of two circular elastic disks and the impact of a soft circular disk into a stiffer rectangular block. All the results of contact force obtained from this study are compared with finite element results and perform a good agreement, the energy conservation is also considered.",{"VI":871},"Impact force analysis using the B-spline material point method",{"VOID":873},"10.32508\u002Fstdjet.v4i1.794","2023-09-14T12:49:24.408+00:00","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fview\u002F794","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fdownload\u002F794\u002F1103",[878,898,916,943],{"id":879,"sortIndex":55,"researcher":23,"roles":880,"affiliations":881,"properties":893},"b02b417c-9336-4919-b1a9-5d56d4f327ec",[],[882],{"id":23,"sortIndex":55,"affiliation":883,"properties":23},{"id":884,"createTime":885,"updateTime":886,"relativeEntities":887,"slug":888,"properties":889,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},"1cb079f7-1fc3-4614-b6b9-631a575a7cd0","2023-09-14T12:49:42.023+00:00","2023-12-27T15:44:49.887+00:00",[],"Department-of-Engineering-Mechanics-Faculty-of-Applied-Sciences-Ho-Chi-Minh-City-University-of-Technology-Vietnam",{"country":890,"title":891},{"VOID":13},{"VI":892},"Department of Engineering Mechanics, Faculty of Applied Sciences, Ho Chi Minh City University of Technology, Vietnam",{"gsAuthor":894,"title":896},{"VOID":895},"nEO-IyIAAAAJ",{"VI":897},"Nha Thanh Nguyen",{"id":899,"sortIndex":55,"researcher":23,"roles":900,"affiliations":901,"properties":911},"75fd31ad-3481-46e2-8ad6-18a39a547e3a",[],[902],{"id":903,"sortIndex":55,"affiliation":904,"properties":909},"5b5905bc-1ebc-4b9c-8b2c-a86756714545",{"id":884,"createTime":885,"updateTime":886,"relativeEntities":905,"slug":888,"properties":906,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},[],{"country":907,"title":908},{"VOID":13},{"VI":892},{"title":910},{"VI":892},{"gsAuthor":912,"title":914},{"VOID":913},"ZUdvNsMAAAAJ",{"VI":915},"Minh Ngoc Nguyen",{"id":917,"sortIndex":55,"researcher":23,"roles":918,"affiliations":919,"properties":940},"9c4d057b-63ec-4840-a6ee-4791c48fd8d5",[],[920],{"id":921,"sortIndex":55,"affiliation":922,"properties":937},"333e10cb-9b71-48d8-a31f-0243f46d84f3",{"id":923,"createTime":924,"updateTime":925,"relativeEntities":926,"slug":927,"properties":928,"entityType":48,"verifyStatus":22,"verifyTime":935,"verifyNote":23,"syncStatus":25,"languages":936,"translateLanguages":23,"viewCount":118},"986e0df4-f163-4292-a4d3-21fee04d8107","2023-08-14T23:55:53.675+00:00","2026-06-19T02:29:52.306+00:00",[],"Tr%C6%B0%E1%BB%9Dng-%C4%90%E1%BA%A1i-h%E1%BB%8Dc-B%C3%A1ch-khoa-%C4%90%E1%BA%A1i-h%E1%BB%8Dc-Qu%E1%BB%91c-gia-Th%C3%A0nh-ph%E1%BB%91-H%E1%BB%93-Ch%C3%AD-Minh",{"country":929,"title":930,"abbreviation":933},{"VOID":13},{"EN":931,"VI":932},"Ho Chi Minh City University of Technology, Vietnam National University Ho Chi Minh City","Trường Đại học Bách khoa - 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In particular, the vision sensor is the \"eye\" of the robot. To solve this problem, we need an efficient image processing algorithm for object identification to optimize the speed. Our classification principle based on the color of the object to be classified first, then separating contour to classify according to the shape of the object. In addition, our paper also propose a classification method that rarely mentioned in the relevant documents that classify based on object's characteristic. In fact, the product packaging not only has one color, but also includes complex color and patterns. Being able to classify these products shows the practicality of the proposed method. For complex colors and patterns object, the PCASIFT algorithm is useful, where SIFT extracts the local characteristics of the object and PCA reduces the number of dimensionality and retain only the best characteristics for identification. To picking object, a proposed design with the optimal requirements of picking order so that picking time is the shortest to minimize the delay for the next picking. The other outstanding advantage is a system of robotic arm to perform pick-up and sorting. This helps to verify good running algorithms in real time. The items are randomly released and the rotation of items is random. The speed of the conveyor is 5cm\u002Fs, an average of more than 2 seconds to pick up an object and robot arm processing precisely at high speed. The experimental results using camera Logitech C270, Yamaha Scara YK-400X robotic arm, LabVolt conveyor and OpenCV library are satisfactory, reliable and applicable.",{"VI":998},"Study on image processing method to classify objects on dynamic conveyor",{"VOID":1000},"10.32508\u002Fstdjet.v2iSI2.489","2023-09-14T13:15:47.223+00:00","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fview\u002F489","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fdownload\u002F489\u002F979",[1005],{"id":1006,"sortIndex":55,"researcher":23,"roles":1007,"affiliations":1008,"properties":1021},"2d139ce5-27ab-472b-8c01-ee9efba03b38",[],[1009],{"id":1010,"sortIndex":55,"affiliation":1011,"properties":1018},"bd8fd964-3bed-44c3-a475-e5aa5fbcbfe5",{"id":923,"createTime":924,"updateTime":925,"relativeEntities":1012,"slug":927,"properties":1013,"entityType":48,"verifyStatus":22,"verifyTime":935,"verifyNote":23,"syncStatus":25,"languages":1017,"translateLanguages":23,"viewCount":118},[],{"country":1014,"title":1015,"abbreviation":1016},{"VOID":13},{"EN":931,"VI":932},{"VOID":934},[27,28],{"title":1019},{"VI":1020},"Ho Chi Minh City University of Technology, VNU-HCM",{"gsAuthor":1022,"title":1024},{"VOID":1023},"OqcQTPsAAAAJ",{"VI":1025},"Huy Ngoc Tran",{"url":1002,"publisher":1027,"properties":1043},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1028,"slug":10,"properties":1029,"entityType":21,"verifyStatus":22,"verifyTime":23,"verifyNote":24,"syncStatus":25,"languages":1034,"translateLanguages":23,"viewCount":29,"subjectFields":1035,"manageAffiliations":1036,"indexDatabases":1037,"url":120,"thumbnailPath":121,"statistic":1038,"gsStatistic":23,"type":23,"analyzePriority":23},[],{"country":1030,"issn":1031,"introduce":1032,"title":1033},{"VOID":13},{"VOID":15},{"EN":17},{"EN":19,"VI":20},[27,28],[],[],[],{"impactFactor":55,"impactFactorByYear":1039,"i10Index":69,"i10IndexLast5Year":128,"totalPublication":129,"totalPublicationByYear":1040,"totalCitation":136,"totalCitationByYear":1041,"totalCitationPerPublication":142,"totalCitationPerPublicationByYear":1042,"hindexLast5Year":148,"hindex":148},{"2020":61,"2021":124,"2022":125,"2023":126,"2024":127},{"2019":51,"2020":131,"2021":132,"2022":133,"2023":134,"2024":135},{"2019":138,"2020":139,"2021":140,"2022":141,"2023":90},{"2019":144,"2020":145,"2021":146,"2022":117,"2023":147},{"volume":1044,"pages":1045,"issue":1047},{"VOID":264},{"VOID":1046},"SI127-SI136",{"VOID":1048},"SI2",{"total":55,"publishYear":55,"statisticByYear":1050},{},"2019-12-31","2026-06-05T23:40:53.827+00:00",{"id":1054,"createTime":1055,"updateTime":1056,"relativeEntities":1057,"slug":1058,"properties":1059,"entityType":170,"verifyStatus":22,"verifyTime":1068,"verifyNote":172,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":89,"primaryUrl":1069,"fullTextUrl":1070,"authors":1071,"publicationType":244,"publisherRelationship":1131,"citationCount":55,"citationInfo":1154,"publishDate":1156,"publishYear":352,"citationAnalyzeStatus":25,"lastCitationAnalyze":1056,"indexDatabases":23,"openAccess":23,"references":23,"isForceReanalyzing":273},"6281c3c3-21eb-4f9e-bca2-d51b4d68e2f4","2023-09-14T11:53:17.907+00:00","2025-08-23T23:30:26.635+00:00",[],"A-research-on-a-new-structure-of-forming-tool-in-Single-Point-Incremental-Forming-SPIF-",{"gsPaper":1060,"abstract":1062,"title":1064,"doi":1066},{"VOID":1061},"13945431360229816111",{"EN":1063},"Single Point Incremental Forming (SPIF) is really a new technology of forming metal sheet nowadays and in recent decades. Although it was invented in, 1967 by Lezak, an American inventor, but the applications of the innovative technology were broad from 1990 because of the advance of controlling technology. This technology is especially adapted to small batch, unique or single productions. There are many forming parameters that influence to the formability of the metal sheet workpiece such as diameter of tool, the revolution per minute of the tool tip, the vertical feed rate after each orbit, the velocity of tool in horizontal plane…. Among of them, in our own experiences, we recognize that in almost all cases, the revolution per minute of the forming tool when forming ferric material sheet such as mild steel, stainless steel, hard steels… should be as small as possible to get the biggest ability of deformation of the workpiece sheet to get rid of failure on the lateral edge of the sheet. The tangential velocity of forming point on the spherical tool tip should be selected to attain the situation of rolling but no sliding of the surface of the spherical tool on the one of the sheet material. The paper recommends a new version of a forming tool in which the tip of the tool is a very hard ball (such as the quenched ball in a ball bearing) that is freely rotate by the friction to modify the contact point on the spherical surface of the tool to avoid the abrading and keep the spherical shape and the situation of rotating but no sliding on the surface of the workpiece sheet as mentioned above. The manufacture of the innovative forming tool is performed and then empirical processes verified it. The models formed by the typical tool are better in comparison with the ones of normal forming tool.",{"VI":1065},"A research on a new structure of forming tool in Single Point Incremental Forming (SPIF)",{"VOID":1067},"10.32508\u002Fstdjet.v3iSI1.757","2023-09-14T11:53:17.906+00:00","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fview\u002F757","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fdownload\u002F757\u002F922",[1072,1096,1115],{"id":1073,"sortIndex":55,"researcher":23,"roles":1074,"affiliations":1075,"properties":1091},"110de80a-ab65-4b0a-a60d-5f4103093567",[],[1076],{"id":1077,"sortIndex":55,"affiliation":1078,"properties":1088},"d075211f-91db-4066-a618-a854a35fd070",{"id":1079,"createTime":1080,"updateTime":1081,"relativeEntities":1082,"slug":1083,"properties":1084,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},"48377983-72c2-4b6a-85fc-3acdc35b087a","2023-09-14T10:12:40.670+00:00","2023-12-27T12:36:42.719+00:00",[],"DCSELAB-Ho-Chi-Minh-City-University-of-Technology-VNUHCM-Vietnam",{"country":1085,"title":1086},{"VOID":13},{"VI":1087},"DCSELAB, Ho Chi Minh City University of Technology, VNUHCM, Vietnam",{"title":1089},{"VI":1090},"DCSELAB - Ho Chi Minh City University of Technology, VNUHCM, Vietnam",{"gsAuthor":1092,"title":1094},{"VOID":1093},"pspnmnAAAAAJ",{"VI":1095},"Nguyen Van Thanh",{"id":1097,"sortIndex":55,"researcher":23,"roles":1098,"affiliations":1099,"properties":1112},"cb04e7d3-16e5-404d-8818-5a4b5d80db4d",[],[1100],{"id":1101,"sortIndex":55,"affiliation":1102,"properties":1109},"504e103a-d67d-416d-abb1-606562cca5ba",{"id":923,"createTime":924,"updateTime":925,"relativeEntities":1103,"slug":927,"properties":1104,"entityType":48,"verifyStatus":22,"verifyTime":935,"verifyNote":23,"syncStatus":25,"languages":1108,"translateLanguages":23,"viewCount":118},[],{"country":1105,"title":1106,"abbreviation":1107},{"VOID":13},{"EN":931,"VI":932},{"VOID":934},[27,28],{"title":1110},{"EN":1111,"VI":932},"Ho Chi Minh City University of Technology",{"title":1113},{"VI":1114},"Le Khanh Dien",{"id":1116,"sortIndex":55,"researcher":23,"roles":1117,"affiliations":1118,"properties":1128},"d16c448c-c1a3-4468-8546-0ce8deefeaf3",[],[1119],{"id":1120,"sortIndex":55,"affiliation":1121,"properties":1126},"da95ac35-4621-479c-8115-60533960b6ac",{"id":1079,"createTime":1080,"updateTime":1081,"relativeEntities":1122,"slug":1083,"properties":1123,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},[],{"country":1124,"title":1125},{"VOID":13},{"VI":1087},{"title":1127},{"VI":1090},{"title":1129},{"VI":1130},"Nguyen Tan Hung",{"url":1069,"publisher":1132,"properties":1148},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1133,"slug":10,"properties":1134,"entityType":21,"verifyStatus":22,"verifyTime":23,"verifyNote":24,"syncStatus":25,"languages":1139,"translateLanguages":23,"viewCount":29,"subjectFields":1140,"manageAffiliations":1141,"indexDatabases":1142,"url":120,"thumbnailPath":121,"statistic":1143,"gsStatistic":23,"type":23,"analyzePriority":23},[],{"country":1135,"issn":1136,"introduce":1137,"title":1138},{"VOID":13},{"VOID":15},{"EN":17},{"EN":19,"VI":20},[27,28],[],[],[],{"impactFactor":55,"impactFactorByYear":1144,"i10Index":69,"i10IndexLast5Year":128,"totalPublication":129,"totalPublicationByYear":1145,"totalCitation":136,"totalCitationByYear":1146,"totalCitationPerPublication":142,"totalCitationPerPublicationByYear":1147,"hindexLast5Year":148,"hindex":148},{"2020":61,"2021":124,"2022":125,"2023":126,"2024":127},{"2019":51,"2020":131,"2021":132,"2022":133,"2023":134,"2024":135},{"2019":138,"2020":139,"2021":140,"2022":141,"2023":90},{"2019":144,"2020":145,"2021":146,"2022":117,"2023":147},{"volume":1149,"pages":1150,"issue":1152},{"VOID":346},{"VOID":1151},"SI157-SI163",{"VOID":1153},"SI1",{"total":55,"publishYear":55,"statisticByYear":1155},{},"2020-04-12",{"id":1158,"createTime":1159,"updateTime":1160,"relativeEntities":1161,"slug":1162,"properties":1163,"entityType":170,"verifyStatus":22,"verifyTime":1160,"verifyNote":1172,"syncStatus":25,"languages":1173,"translateLanguages":23,"viewCount":55,"primaryUrl":1174,"fullTextUrl":1175,"authors":1176,"publicationType":244,"publisherRelationship":1220,"citationCount":23,"citationInfo":23,"publishDate":1241,"publishYear":594,"citationAnalyzeStatus":25,"lastCitationAnalyze":23,"indexDatabases":23,"openAccess":23,"references":1242,"isForceReanalyzing":273},"8b9ff2f1-702f-40cf-9cc8-b6cd194eed95","2024-04-16T16:56:04.655+00:00","2025-01-16T23:24:42.177+00:00",[],"Manufacturing-Thermal-resistant-Aluminum-Alloy-Wire-for-Overhead-Line-Conductor",{"keywords":1164,"abstract":1166,"title":1168,"doi":1170},{"EN":1165},"Aluminum thermal-resistant wire, Aluminum-zirconium wire, Al-Zr-Si-Fe alloy, electrical conductor.",{"EN":1167},"One of the overhead line conductor’s tasks is to ensure high electrical conductivity and high tensile strength after repeated heating to 180 oC. However, conventional aluminum conductor steel reinforced (ACSR) does not meet the above requirements (operating temperature ≤ 90 oC). To solve this problem, foreign countries have used Zr-bearing aluminum alloy, adding other alloying elements, such as Si and Fe, to manufacture thermal-resistant wire for overhead line conductors. This paper aim is to study the manufacturing process of thermal-resistant Al-Zr-Si-Fe alloy wire for overhead line conductors. Al-Zr-Si-Fe alloy was manufactured in the electric furnace and then cast in the permanent mold. Al-Zr-Si-Fe alloy billets were extruded to a diameter of 4.5-4.7 mm at 470 oC. After that, the extruded rods were cold-drawn to a diameter of 2.5 mm. The wire samples were annealed for 10 hours in an electric furnace at a temperature ranging from 350 oC to 450 oC. The as-cast Al-Zr-Si-Fe alloy microstructures show that the alloy grain morphologies are fine and equiaxed, and there are no Al3Zr crystals in the alloys. The electrical resistivity of the as-drawn Al-Zr-Si-Fe alloy wire is high because zirconium completely dissolves in an aluminum solid solution. After annealing the wire at 350 oC, the tensile strength of the wire decreases, and elongation slightly increases due to the reduction of lattice distortions. Resistivity slightly decreases because the metastable Al3Zr particle precipitation from aluminum solid solution is relatively slow at temperatures &lt; 400 °C. At an annealing temperature of 400–450 oC, the tensile strength increases significantly, the elongation slightly decreases, and the resistivity noticeably decreases due to the precipitation of metastable Al3Zr (L12) particles. After annealing at 450 oC for 10 hours, the mechanical, electrical, and thermal-resistant properties of the wire meet the AT1 type requirements of standard IEC 62004.",{"EN":1169},"Manufacturing Thermal-resistant Aluminum Alloy Wire for Overhead Line Conductor",{"VOID":1171},"10.32508\u002Fstdjet.v6iSI3.1185","Auto Verify",[28],"http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fview\u002F1185","http:\u002F\u002Fstdjet.scienceandtechnology.com.vn\u002Findex.php\u002Fstdjet\u002Farticle\u002Fdownload\u002F1185\u002F1307",[1177,1194,1207],{"id":1178,"sortIndex":55,"researcher":23,"roles":1179,"affiliations":1180,"properties":1191},"d415018e-edc1-4d24-88a8-fba2c56b427d",[],[1181],{"id":1182,"sortIndex":55,"affiliation":1183,"properties":23},"2d73a859-0788-46be-8ef7-3431713dca18",{"id":1184,"createTime":1185,"updateTime":1185,"relativeEntities":1186,"slug":1187,"properties":1188,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},"10cea1bf-6389-4c50-83d0-2e5f249413bc","2024-04-16T16:56:04.696+00:00",[],"Faculty-of-Materials-Technology-HCMUT-VNUHCM-268-Ly-Thuong-Kiet-Ward-14-District-10-Ho-Chi-Minh-City-Vietnam",{"title":1189},{"EN":1190},"Faculty of Materials Technology, HCMUT–VNUHCM, 268 Ly Thuong Kiet, Ward 14, District 10, Ho Chi Minh City, Vietnam",{"title":1192},{"EN":1193},"Huynh Cong Khanh",{"id":1195,"sortIndex":67,"researcher":23,"roles":1196,"affiliations":1197,"properties":1204},"79363d9d-ac45-48a4-b33f-5983d448c23f",[],[1198],{"id":1199,"sortIndex":55,"affiliation":1200,"properties":23},"ac4bfb59-02d0-4350-a298-3f116d3c0366",{"id":1184,"createTime":1185,"updateTime":1185,"relativeEntities":1201,"slug":1187,"properties":1202,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},[],{"title":1203},{"EN":1190},{"title":1205},{"EN":1206},"Ly Thai Phap",{"id":1208,"sortIndex":529,"researcher":23,"roles":1209,"affiliations":1210,"properties":1217},"c68cada0-e738-4822-8e56-55d84d129bab",[],[1211],{"id":1212,"sortIndex":55,"affiliation":1213,"properties":23},"44101ad6-36c0-4d64-9397-e6f2265bfa6c",{"id":1184,"createTime":1185,"updateTime":1185,"relativeEntities":1214,"slug":1187,"properties":1215,"entityType":48,"verifyStatus":25,"verifyTime":23,"verifyNote":23,"syncStatus":25,"languages":23,"translateLanguages":23,"viewCount":55},[],{"title":1216},{"EN":1190},{"title":1218},{"EN":1219},"Do Thanh Toan",{"url":23,"publisher":1221,"properties":1237},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":1222,"slug":10,"properties":1223,"entityType":21,"verifyStatus":22,"verifyTime":23,"verifyNote":24,"syncStatus":25,"languages":1228,"translateLanguages":23,"viewCount":29,"subjectFields":1229,"manageAffiliations":1230,"indexDatabases":1231,"url":120,"thumbnailPath":121,"statistic":1232,"gsStatistic":23,"type":23,"analyzePriority":23},[],{"country":1224,"issn":1225,"introduce":1226,"title":1227},{"VOID":13},{"VOID":15},{"EN":17},{"EN":19,"VI":20},[27,28],[],[],[],{"impactFactor":55,"impactFactorByYear":1233,"i10Index":69,"i10IndexLast5Year":128,"totalPublication":129,"totalPublicationByYear":1234,"totalCitation":136,"totalCitationByYear":1235,"totalCitationPerPublication":142,"totalCitationPerPublicationByYear":1236,"hindexLast5Year":148,"hindex":148},{"2020":61,"2021":124,"2022":125,"2023":126,"2024":127},{"2019":51,"2020":131,"2021":132,"2022":133,"2023":134,"2024":135},{"2019":138,"2020":139,"2021":140,"2022":141,"2023":90},{"2019":144,"2020":145,"2021":146,"2022":117,"2023":147},{"volume":1238,"pages":1239,"issue":1240},{"VOID":589},{"VOID":591},{"VOID":350},"2023-07-11",[]]