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Dhakad, Pankaj Agawal, M.K. Pradhan, ‘‘Characteristic behaviour of aluminium metal matrix composites: A review”, Mater. Today Proc. 5 (2018) 5830–5836.\nMohammad Karbalaei Akbari, Kamyar Shirvanimoghaddam, Zhenyin Hai, Serge Zhuiykov, Hamid Khayyam, Al-TiB2 micro\u002Fnanocomposites: Particle capture investigations, strengthening mechanisms and mathematical modelling of mechanical properties, Mater. Sci. Eng. A 682 (2017) 98–106.\nP. Pramod Kumar, V.V. Subba Rao, S. Sarath Chandra, Deflection behavior of carbon nanotube reinforced polymer composite beams using first order shear deformation theory, Materials Today: Proceedings,Volume 5, Issue 13, Part 3, 2018, Pages 26836-26842, ISSN 2214-7853.\nKumar, P.P. Venkata Subba Rao, V. An analytical investigation of deflection behavior of CNT reinforced composite plates under first-order shear deformation theory, Journal of Advanced Research in Dynamical and Control Systems, volume 11, number 1 Special Issue, pages 1709-1716, 2019.\nBhanuprakash, L., Varghese, S., Singh, S.K. Glass Fibre Reinforced Epoxy Composites Modified with Graphene Nanofillers: Electrical Characterization (2022) Journal of Nanomaterials, 2022, art. no. 4611251\nPrudhvidhar Reddy Andem, Saride Ramya Bhavana, Peyyala Pramod Kumar, Mallepally Venkateswar Reddy, Experimental Investigation of Mechanical Characterization of Sugarcane Bagasse & Sapodilla Seed Shell Powder Reinforced Polymer Composite, SAE Technical Papers, 2022, 0148-7191.\nPeyyala, P.K. and Baddepudi, M. and Subba Rao, V.V., An Analytical Study of Buckling Behavior of Nanocomposite Beams, SAE Technical Papers, 2018.\nNagaraj Goud, 2022, An experimental study on mechanical properties of Kevlar composite for aircraft structural applications, Mater. Today: Proc., 64, 909\nPeyyala, Pramod Kumar; V V, Subba Rao. An analytical study on buckling behavior of CNT\u002Fpolymer composite plates using first order shear deformation theory. Journal of Theoretical and Applied Mechanics, [S.l.], v. 56, n. 1, p. 71-79, jan. 2018. ISSN 1429-2955.\nSai Saran, 2022, 3D printing of composite materials: A short review, Mater. Today: Proc., 64, 615\nH. Lilholt, J.M. Lawther, ‘‘Comprehensive Composite Materials”, Chapter 1.10, 2000, Elsevier Ltd.\nWilliam D. Callister Jr, ‘‘Materials Science and Engineering Introduction”, seventh, John Wiley & Sons Inc., New York, 2007.\nMd. Habibur Rahman, H.M. Mamun Al Rashed, Characterization of silicon carbide reinforced aluminum matrix Composites, ScienceDirect Procedia Engineering 90 (2014) 103–109.\nVikas Verma, B.V. Manoj Kumar, ‘‘Processing of alumina based composites via conventional sintering and their characterization”. Mater. Manuf. Process. 2017; 32:21-26.\nDunia Abdul Saheb, Aluminum silicon carbide and aluminum graphite particulate composites, ARPN J. Eng. Appl. Sci. 6 (2011) 41–46.\nE. George, D. Totten, Scott Mackenzie, Handbook of Aluminium Alloy Production and Materials Manufacturing volume 2, Marcel Dekker Inc, NewYork.\nAnthony Macke, Benjamin F. Schultz, Pradeep K. Rohatgi, Nikhil Gupta, Metal Matrix Composites for Automotive Applications, ‘‘Advanced Composite Materials for Automotive Applications: Structural Integrity and Crashworthiness”, 2014 John Wiley & Sons, Ltd.\nGupta, 2012, Magnesium matrix composite foams— Density, mechanical properties, and applications, Metals, 2, 238, 10.3390\u002Fmet2030238\nRajesh, 2016, Mohammed Kaleemulla, Experimental investigations on mechanical behavior of aluminium metal matrix composites, IOP Conf. Ser. Mater. Sci. Eng., 149, 10.1088\u002F1757-899X\u002F149\u002F1\u002F012121\nMuhammad Hayat Jokhio, Muhammad Ibrahim Panhwar, Mukhtiar Ali Unar, Manufacturing of aluminum composite material using stir casting process, Mehran Univ. Res. J. Eng. Technol. 30 (2011) 53–64.\nShaikusmansha, 2013, Production and tribological characterization of stir - cast hybrid composite aluminium 6061 reinforced with Sic and Ti particulates, Int. J. Innov. Res. Dev., 2\nHimanshu Kala, K.K.S Mer, Sandeep Kumar, ‘‘A review on mechanical and tribological behaviors of stir cast aluminum matrix composites”. Science Direct, Procedia Mater. Sci. 6 (2014).\nAnkit Tyagi, Deepak Sharma, ‘‘Characterization of AA 6082\u002FSi3N4 Composites”, 1st International Conference on New Frontiers in Engineering, Science & Technology, New Delhi, India, January 8-12, 2018.\nAkhileshwar Nirala, S. Soren, Navneet Kumar, Deepak Sharma, ‘‘A comprehensive review on mechanical properties of Al-B4C stir casting fabricated composite”, Mater. Today Proc., 2019 Elsevier Ltd.\nDixit, 2008, Structure – property correlations in Al 7050 and Al 7055 high-strength aluminum alloys, Mater. Sci. Eng. A, 478, 163, 10.1016\u002Fj.msea.2007.05.116\nAkash Kumar, Prabhutosh Kumar , ‘‘ A review on the mechanical properties, tribological behavior and the micro structural characterization of Aluminum metal matrix composites”, ISSN 2229-5518, Int. J. Sci. Eng. 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Guptha, Engineerig Metrology, Dhanpat Rail publications, 5th edition:1998, P. 533.\nCharit, 2004, Evaluation of Microstructure and Superplasticity in Friction Stir Processed 5083 Al Alloy, J. Mater. Res., 19, Nov, 10.1557\u002FJMR.2004.0429\nW. M. Thomas, E. D. Nicholas, J. C. Needham, M. G. Murch, P. Temple-Smith, C. J. Dawes, “Friction Welding” US Patent 5,460,317, October 25, 1995.\nW.M. Thomas, E.D. Nicholas, J.C. Needham, M.G. Murch, P. Temple-Smith, C.J. Dawes, Friction stir butt welding, GB Patent No. 9125978.8, International Patent No. PCT\u002FGB92\u002F02203, (1991).\nMurr, 1997, Dynamic recrystallisation in the friction stir welding of aluminium alloy 1100, Journal of Materials Science Letters, 16, 1801, 10.1023\u002FA:1018556332357\nNicholas, 1998, Developments in the friction stir welding of metals\nLeonard, 2000, Microstructure and aging behaviour of FSW in Al alloys 2014A–T651 and 7075–T651\nPrado, 2001, Tool wear in the friction stir welding of aluminium alloy 6061+20% Al2O3: A preliminary study, Scripta Materialia, 45, 75, 10.1016\u002FS1359-6462(01)00994-0\nNelson, 2000, friction stir welding of Al MMC 6061–B4C\nReynolds, 2000, Visualisation of material flow in autogenous friction stir welds, Science and technology of welding and joining, 5, 120, 10.1179\u002F136217100101538119\nReynolds, 2001, Visualization of the Material Flow in AA2195 Friction-Stir Welds Using a Marker Insert Technique, Metallurgical and Material Transactions, 32A, 2879\nGuerra, 2003, Flow patterns during friction stir welding, Materials Characterisation, 49, 95, 10.1016\u002FS1044-5803(02)00362-5\nMetallurgical and O. 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Midling, friction stir welding of age hardening aluminium alloys“. ”A process model for Material Transactions 32A (5) (2001) 1189-1200.\nQi, 1999\nLiu, 2003, Tensile properties and fracture locations of friction–stir welded joints of 6061–T6 aluminum alloy, Journal of Materials Science Letters, 22, 1061, 10.1023\u002FA:1024970421082",{"EN":243},"Experimental investigation of friction stir welding of aluminium alloy",{"VOID":245},"10.1016\u002Fj.matpr.2023.06.242","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS2214785323036362",[248,265,278,293],{"id":249,"sortIndex":155,"researcher":18,"roles":250,"affiliations":251,"properties":262},"22b29f49-e6b7-4f37-b814-f33819132021",[88],[252],{"id":18,"sortIndex":19,"affiliation":253,"properties":18},{"id":254,"createTime":255,"updateTime":256,"relativeEntities":257,"slug":258,"properties":259,"entityType":39,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"09b6c2b7-5210-4ee4-acf5-7dba196997b0","2024-01-28T01:06:55.044+00:00","2025-06-11T22:38:53.876+00:00",[],"Department-of-EEE-JNTUA-College-of-Engineering-Anantapur-India",{"title":260},{"VI":261},"Department of EEE, JNTUA College of Engineering, Anantapur, India",{"title":263},{"VI":264},"P. 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Compos. Constr., 7, 292, 10.1061\u002F(ASCE)1090-0268(2003)7:4(292)\nNatarajan, 2018, Ductility response of hybrid fibre reinforced concrete beams, J. Urban Environ. Eng., 11, 174, 10.4090\u002Fjuee.2017.v11n2.174179\nMohammadhosseini, 2018, The feasibility of improving impact resistance and strength properties of sustainable concrete composites by adding waste metalized plastic fibres, Constr. Build. Mater., 169, 223, 10.1016\u002Fj.conbuildmat.2018.02.210\nAbdalla, 2020, Flexural strengthening of reinforced concrete beams with externally bonded hybrid systems, Procedia Struct. Integr., 28, 2312, 10.1016\u002Fj.prostr.2020.11.078\nMhanna, 2019, Shear strengthening of reinforced concrete beams using CFRP wraps, Procedia Struct. Integr., 17, 214, 10.1016\u002Fj.prostr.2019.08.029\nKumara, 2019, Strengthening of rc beam by using externally bonded cfrp laminates, vol. 21\nGideon, 2018, Flexural retrofit of RC beams using CFRP laminates, IOP Conf. Ser. Mater. Sci. Eng., 431\nAttari, 2012, Flexural strengthening of concrete beams using CFRP, GFRP and hybrid FRP sheets, Constr. Build. Mater., 37, 746, 10.1016\u002Fj.conbuildmat.2012.07.052\nBelarbi, 2013, FRP systems in shear strengthening of reinforced concrete structures, Procedia Eng., 57, 2, 10.1016\u002Fj.proeng.2013.04.004\nBodzak, 2019, Flexural behaviour of concrete beams reinforced with different grade steel and strengthened by CFRP strips, Compos. Part B Eng., 167, 411, 10.1016\u002Fj.compositesb.2019.02.056\nKara, 2012, Flexural performance of FRP reinforced concrete beams, Compos. Struct., 94, 1616, 10.1016\u002Fj.compstruct.2011.12.012\nKassem, 2011, Evaluation of Flexural Behavior and Serviceability Performance of Concrete Beams Reinforced with FRP Bars, J. Compos. Constr., 15, 682, 10.1061\u002F(ASCE)CC.1943-5614.0000216\nSankaramoorthy, 2022, Improved performance of confinement of RC beam with glass fibre reinforced polymer laminates, Mater. Today:. Proc., 56, 3190\nLiu, 2021, Experimental study on the flexural behavior of RC beams strengthened with prestressed BFRP laminates, Eng. Struct., 233, 111801, 10.1016\u002Fj.engstruct.2020.111801\nHosny, 2006, Performance of reinforced concrete beams strengthened by hybrid FRP laminates, Cement Concr. Compos., 28, 906, 10.1016\u002Fj.cemconcomp.2006.07.016\nGao, 2016, Flexural behavior of preloaded reinforced concrete beams strengthened by prestressed CFRP laminates, Compos. Struct., 157, 33, 10.1016\u002Fj.compstruct.2016.08.013\nHemapriya, 2022, Investigation on RC beams strengthened with hybrid fibre reinforced polymer laminates wrapped at flexure zone, Mater. Today: Proc.\nYang, 2021, Experimental study of FRP-strengthened concrete beams with corroded reinforcement, Constr. Build. Mater., 301, 124076, 10.1016\u002Fj.conbuildmat.2021.124076\nKachlakev, 2000, Behavior of full-scale reinforced concrete beams retrofitted for shear and flexural with FRP laminates, Compos. 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Syst., 29, 1645, 10.1016\u002Fj.future.2013.01.010\nNir, 2017, The evolution of the IoT industry and market in China: an interplay of institutions, demands and supply, Telecommun. Policy, 41, 49, 10.1016\u002Fj.telpol.2016.11.002\nAxelrod C. Warren, Enforcing security, safety and privacy for the IoT, in: Systems, Applications and Technology Conference (LISAT), 2015 IEEE Long Island, IEEE, 2015.\nPathak, 2016, IoT: an overview of the emerging technology, Res. Comput. Sci. Softw. 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Applications 121(9) (2015) 1–9.\nNiki tsitstiroudi, panagioties sarigiannidis, Eirini karapistoli, EyeSim: A Mobile Application for Visual-Assisted Wormhole Attack Detection in IoT-enabled WSNs, 9th Wireless and Mobile Networking Conference 2016, pp. 1–7.\nNilima Nikam, Poorna R. Pimpale, Pranali Pawar, Anita Shirture, Detecting and Monitoring Wormhole in IoT enabled WSNs Using EyeSim, Int. J. Eng. Techn. Res. 7(6) (2017) 15–17.\nMehta, 2018, Trust, based mechanism for Securing IoT Routing Protocol RPL against Wormhole & Grayhole Attacks, IEEE, 1\nShukla, 2017, ML-IDS: A Machine Learning Approach to Detect Wormhole Attacks in IoT“ IEEE, Intell. Syst. Conf., 234\nSneha Deshmukh Bhosale, S.S. Sonavane, Wormhole attack detection in internet of things, Int. J. Eng. Technol. 749–751.\nChandra Sekhar Reddy, 2018, Implementation of Wormhole Attack on RPL Protocol in IoT, Int. J. Comput. Sci. 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Syst., 8, 1\nSharma, 2016, Evaluation of passenger ride comfort of Indian rail and road vehicles with ISO 2631–1 standards: Part 2 – simulation, Int. J. Veh. Struct. Syst., 8, 7\nSharma, 2016, Analysis of creep force and its sensitivity on stability and vertical-lateral ride for railway vehicle, Int. J. Veh. Noise Vibr., 12, 60, 10.1504\u002FIJVNV.2016.077474\nSharma, 2017, Stress and vibrational analysis of an Indian railway RCF bogie, Int. J. Veh. Struct. Syst., 9, 296\nSharma, 2015, Challenges in rail vehicle-track modeling and simulation, Int. J. Veh. Struct. Syst., 7, 1\nSharma, 2016, Dynamics analysis of wheel rail contact using FEA, Procedia Eng., 144, 1119, 10.1016\u002Fj.proeng.2016.05.076\nSharma, 2017, Modernization of railway track with composite sleepers, Int. J. Veh. Struct. Syst., 9, 321\nSharma, 2017, Impact of electric locomotive traction of the passenger vehicle ride quality in longitudinal train dynamics in the context of Indian railways, Mech. Ind., 18, 222, 10.1051\u002Fmeca\u002F2016047\nSharma, 2017, Ride performance of a highspeed rail vehicle using controlled semi active suspension system, Smart Mater. Struct., 26, 55026, 10.1088\u002F1361-665X\u002Faa68f7\nSharma, 2018, Ride comfort of a higher speed rail vehicle using a magnetorheological suspension system, Proc. IMechE, 232, 32, 10.1177\u002F1464419317706873\nSharma, 2018, Disturbance rejection and force-tracking controller of nonlinear lateral vibrations in passenger rail vehicle using magnetorheological fluid damper, J. Intell. Mater. Syst. Struct., 29, 279, 10.1177\u002F1045389X17721051\nPalli, 2018, A review on dynamic analysis of rail vehicle coach, Int. J. Veh. Struct. Syst., 10\nSharma, 2018, Rail vehicle modeling and simulation using Lagrangian method, Int. J. Veh. Struct. Syst., 10\nSharma, 2018, Simulation of quarter-car model with magnetorheological dampers for improving ride quality, Int. J. Veh. Struct. Syst., 10\nS.K. Sharma, A. Kumar, The Impact of a Rigid-Flexible System on the Ride Quality of Passenger Bogies using a Flexible Carbody, in Pombo J. (ed.) Proceedings of the Third International Conference on Railway Technology: Research Development and Maintenance Stirlingshire UK 5-8 April 2016 Cagliari Sardinia Italy. Stirlingshire UK: Civil-Comp Press 87 (2016)doi: 10.4203\u002Fccp.110.87.\nSharma, 2016, Jerk analysis in rail vehicle dynamics, Perspect. Sci., 8, 648, 10.1016\u002Fj.pisc.2016.06.047\nSharma, 2014, A comparative study of Indian and worldwide railways, Inte. J. Mech. Eng. Rob. Res., 1, 114\nSharma, 2013, Zero energy building envelope components: a review, Int. J. Eng. Res. Appl., 3, 662\nKumar, 2018, Modelling vertical human walking forces using self-sustained oscillator, Mech. Syst. Signal Process., 99, 345, 10.1016\u002Fj.ymssp.2017.06.014\nKumar, 2018, A nonlinear oscillator model to generate lateral walking force on a rigid flat surface, Int. J. Struct. Stab. Dyn., 18, 1850020, 10.1142\u002FS0219455418500207\nKumar, 2016, Modelling of lateral human walking force by self-sustained oscillator, Procedia Eng., 144, 945, 10.1016\u002Fj.proeng.2016.05.121\nKumar, 2017, A modified hybrid Van der pol-duffing-rayleigh oscillator for modelling the lateral walking force on a rigid floor, Phys. D: Nonlinear Phenom., 358, 1, 10.1016\u002Fj.physd.2017.07.008\nKumar, 2018, Modelling of longitudinal human walking force using self-sustained oscillator, Int. J. Struct. Stab. Dyn., 18, 1850080, 10.1142\u002FS0219455418500803\nSharma, 2017, Improved suspension design of indian railway general sleeper ICF coach for optimum ride comfort, J. Vibr. Eng. Technol., 5, 547\nSharma, 2018, An investigation of a locomotive structural crash-worthiness using finite element simulation, SAE Int. J. Commer. Veh., 11, 1, 10.4271\u002F02-11-04-0019\nSharma, 2018, Sensitivity analysis of three wheel vehicle suspension parameters influencing ride behavior, Noise Vibr. Worldwide, 47, 272, 10.1177\u002F0957456518796846\nSharma, 2017, Ride eigenvalue and stability analysis of three-wheel vehicle using Lagrangian dynamics, Int. J. Veh. Noise Vibr., 13, 13, 10.1504\u002FIJVNV.2017.086021\nPalli, 2017, Dynamic behaviour of a 7 DoF passenger car model, Int. J. Veh. Struct. Syst., 9, 57\nA.K. Sinha et al. Performance Enhancement of an all-terrain vehicle by optimizing steering, powertrain and brakes, Adv. Eng. Des. (2019) 207–215.\nGoswami, 2019, Optimization design for aerodynamic elements of Indian locomotive of passenger train, Adv. Eng. Des., 663\nSharma, 2019, Pothole detection and warning system for Indian roads, Adv. Interdiscip. Eng., 511, 10.1007\u002F978-981-13-6577-5_48\nSharma, 2018, Impact of longitudinal train dynamics on train operations: a simulation-based study, J. Vib. Eng. Technol., 6, 197, 10.1007\u002Fs42417-018-0033-4\nSharma, 2019, Multibody analysis of longitudinal train dynamics on the passenger ride performance due to brake application, Proc. Inst. Mech. Eng. Part K: J. Multi-body Dyn., 233, 266\nAvesh, 2019, Parametric optimization for the design of passenger vehicle suspension system with the application of genetic algorithm, Int. J. Veh. Struct. Syst., 11, 154\nS. Bhardawaj R.C. Sharma S.K. Sharma Development in the modeling of rail vehicle system for the analysis of lateral stability Materials Today: Proceedings, 25 (2020) 610–619, https:\u002F\u002Fdoi.org\u002F10.1016\u002Fj.matpr.2019.07.376.\nSharma, 2019, Semi-active control to reduce lateral vibration of passenger rail vehicle using disturbance rejection and continuous state damper controllers, J. Vib. Eng. Technol., 7, 117, 10.1007\u002Fs42417-019-00088-2\nGoyal, 2019, Crashworthiness analysis of foam filled star shape polygon of thin-walled structure, Thin-Walled Struct., 144, 106312, 10.1016\u002Fj.tws.2019.106312\nS. Bhardawaj, R.C. Sharma, S.K. Sharma, Ride Analysis of Track-Vehicle-Human Body Interaction Subjected to Random Excitation, Journal of the Chinese Society of Mechanical Engineers, 2020 (Accepted for publication).\nS. Bhardawaj, R.C. Sharma, S.K. Sharma, On the Planning and Construction of Railway Curved Track, Int. J. Vehicle Structures & Systems, 2020, (Accepted for publication)\nS.K. Sharma, R.C. Sharma, Combined Multi-Body-System and Finite Element Analysis of a Rail Locomotive Crashworthiness, Int. J. Vehicle Structures & Systems, 12(1), 2020\nR.C. Sharma, S.K. Sharma, Linear and Non-Linear Stability Analysis of a Constrained Railway Wheelaxle, International Journal of Vehicle Structures and Systems, Vol. 12 (1), 2020\nR.C. Sharma, S.K. Sharma, S. Bhardawaj, Parametric analysis of ride behaviour of a roadway vehicle subjected to random excitation, Journal of the Chinese Institute of Engineers, 2020, (Accepted for publication)",{"EN":748},"Analysis of frontal car crash characteristics using ANSYS",{"VOID":750},"10.1016\u002Fj.matpr.2019.12.358","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS2214785319343883",[753,768,780],{"id":754,"sortIndex":86,"researcher":18,"roles":755,"affiliations":756,"properties":765},"8da613d1-837f-4917-b4f5-6cfc26762baf",[88],[757],{"id":18,"sortIndex":19,"affiliation":758,"properties":18},{"id":759,"createTime":760,"updateTime":760,"relativeEntities":761,"slug":18,"properties":762,"entityType":39,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"3550f84e-fbf8-4f7d-9c33-9b96dc558f11","2024-01-26T17:49:49.663+00:00",[],{"title":763},{"VI":764},"Mechanical Engineering Department, Maharishi Markandeshwar (Deemed to be University), Mullana 133207, Ambala, India",{"title":766},{"VI":767},"Rakesh Chandmal Sharma",{"id":769,"sortIndex":19,"researcher":18,"roles":770,"affiliations":771,"properties":777},"a9616cd6-a6a9-41ea-823c-b7012689f8bd",[88],[772],{"id":18,"sortIndex":19,"affiliation":773,"properties":18},{"id":759,"createTime":760,"updateTime":760,"relativeEntities":774,"slug":18,"properties":775,"entityType":39,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},[],{"title":776},{"VI":764},{"title":778},{"VI":779},"Sono Bhardawaj",{"id":781,"sortIndex":155,"researcher":18,"roles":782,"affiliations":783,"properties":792},"8d28a850-d115-4c4d-8959-191f228ec3d8",[88],[784],{"id":18,"sortIndex":19,"affiliation":785,"properties":18},{"id":786,"createTime":787,"updateTime":787,"relativeEntities":788,"slug":18,"properties":789,"entityType":39,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"86b70787-db54-4d9c-8602-d6604249e5af","2024-01-26T17:49:49.747+00:00",[],{"title":790},{"VI":791},"Department of Mechanical Engineering, Amity School of Engg. and Tech., Amity University, Uttar Pradesh, Noida 201303, India",{"title":793},{"VI":794},"Sunil Kumar Sharma",{"url":751,"publisher":796,"properties":811},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":797,"slug":10,"properties":798,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":801,"manageAffiliations":802,"indexDatabases":803,"url":18,"thumbnailPath":18,"statistic":18,"gsStatistic":18,"type":18,"analyzePriority":18},[],{"issn":799,"title":800},{"VOID":13},{"EN":15},[],[],[804],{"id":44,"indexDatabase":805,"url":57,"indexYears":58,"academicFieldIds":810,"indexDatabaseRanking":61},{"id":46,"createTime":47,"updateTime":48,"relativeEntities":806,"label":807,"description":808,"key":54,"publicationTags":809,"standard":18},[],{"EN":51,"VI":51},{"EN":51,"VI":53},[56],[60],{"volume":812,"pages":814},{"VOID":813},"25",{"VOID":815},"898-902","2020-01-01",2020,{"id":819,"createTime":820,"updateTime":821,"relativeEntities":822,"slug":823,"properties":824,"entityType":79,"verifyStatus":80,"verifyTime":821,"verifyNote":81,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"primaryUrl":831,"fullTextUrl":18,"authors":832,"publicationType":113,"publisherRelationship":863,"citationCount":18,"citationInfo":18,"publishDate":884,"publishYear":885,"citationAnalyzeStatus":17,"lastCitationAnalyze":18,"indexDatabases":18,"openAccess":18,"references":18,"isForceReanalyzing":137},"9a946857-fbc4-4509-9460-c7312a84880c","2023-12-05T13:01:25.411+00:00","2025-01-02T23:59:32.452+00:00",[],"Synthesis-characterization-and-tribological-study-of-zinc-oxide-nanoparticles",{"references":825,"title":827,"doi":829},{"VOID":826},"Astruc, 2010, Dendrimers designed for functions: From physical, photophysical, and supramolecular properties to applications in sensing, catalysis, molecular electronics, photonics, and nanomedicine, Chem. 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A review of recent developments of friction modifiers for liquid lubricants ,Current Opinion in Solid State and Materials Science.,2014;18:119-39\nRapoport, 2002, Mechanism of friction of fullerenes, Ind Lubrication and Tribology, 54, 171, 10.1108\u002F00368790210431727\nHu, 2002, Preparation and tribological properties of nanometer magnesium borate as lubricating oil additive, Wear, 252, 370, 10.1016\u002FS0043-1648(01)00862-6\nXiaodong, 2007, Lubricating properties of Cyanex 302-modified MoS2 microspheres in base oil 500SN, Lubrication Science, 19, 71, 10.1002\u002Fls.32\nZhou, 1999, Study on the structure and tribological properties of surface-modified Cu nanoparticles, Materials Research Bulletin, 34, 1361, 10.1016\u002FS0025-5408(99)00150-6\nNarayanunni, 2011, Influence of surface topography on frictional properties of Cu surfaces under different lubrication conditions: Comparison of dry, base oil, and ZnS nanowire-based lubrication system, Tribology International, 44, 1720, 10.1016\u002Fj.triboint.2011.06.020\nAkbulut, 2012, Nanoparticles –Based lubrication Systems, Powder Metallurgy and Mining, 10.4172\u002F2168-9806.1000e101\nDroppo I G, Leppard GG ,Flocculation in natural and engineered environmental systems,Boca Raton,2005 p xix 438, doi: https:\u002F\u002Fdoi.org\u002F10.1201\u002F9780203485330",{"EN":828},"Synthesis, characterization and tribological study of zinc oxide nanoparticles",{"VOID":830},"10.1016\u002Fj.matpr.2020.09.595","https:\u002F\u002Fwww.sciencedirect.com\u002Fscience\u002Farticle\u002Fpii\u002FS221478532037320X",[833,848],{"id":834,"sortIndex":19,"researcher":18,"roles":835,"affiliations":836,"properties":845},"493cf2bc-dc50-4598-adea-4e36028a8dd3",[88],[837],{"id":18,"sortIndex":19,"affiliation":838,"properties":18},{"id":839,"createTime":840,"updateTime":840,"relativeEntities":841,"slug":18,"properties":842,"entityType":39,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"72fd17ec-c4a9-4bad-a279-d795e5da8cc1","2023-12-05T13:01:25.422+00:00",[],{"title":843},{"VI":844},"Deparment of Mechanical Engineering, Yeshwantrao Chavan College of Engineering, Nagpur 441110, Maharashtra, India",{"title":846},{"VI":847},"Saurabh Sarkar",{"id":849,"sortIndex":86,"researcher":18,"roles":850,"affiliations":851,"properties":860},"8faaeaff-4321-49a4-8745-b712328c4f4d",[88],[852],{"id":18,"sortIndex":19,"affiliation":853,"properties":18},{"id":854,"createTime":855,"updateTime":855,"relativeEntities":856,"slug":18,"properties":857,"entityType":39,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19},"be6a1f75-c602-49b5-9ba8-6cc0f8337d83","2023-12-05T13:01:25.434+00:00",[],{"title":858},{"VI":859},"Department of Chemistry, DRB Sindhu Mahavidylaya, Panchpaoli, Nagpur 440017, Maharashtra, India",{"title":861},{"VI":862},"Ratna Sarkar",{"url":831,"publisher":864,"properties":879},{"id":6,"createTime":7,"updateTime":8,"relativeEntities":865,"slug":10,"properties":866,"entityType":16,"verifyStatus":17,"verifyTime":18,"verifyNote":18,"syncStatus":17,"languages":18,"translateLanguages":18,"viewCount":19,"subjectFields":869,"manageAffiliations":870,"indexDatabases":871,"url":18,"thumbnailPath":18,"statistic":18,"gsStatistic":18,"type":18,"analyzePriority":18},[],{"issn":867,"title":868},{"VOID":13},{"EN":15},[],[],[872],{"id":44,"indexDatabase":873,"url":57,"indexYears":58,"academicFieldIds":878,"indexDatabaseRanking":61},{"id":46,"createTime":47,"updateTime":48,"relativeEntities":874,"label":875,"description":876,"key":54,"publicationTags":877,"standard":18},[],{"EN":51,"VI":51},{"EN":51,"VI":53},[56],[60],{"volume":880,"pages":882},{"VOID":881},"44",{"VOID":883},"3606-3612","2021-01-01",2021]