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dc.contributor.authorSingh, G.en
dc.contributor.authorSharma, S.en
dc.contributor.authorSeikh, A. H.en
dc.contributor.authorLi, C.en
dc.contributor.authorZhang, Y.en
dc.contributor.authorRajkumar, S.en
dc.contributor.authorKumar, A.en
dc.contributor.authorSingh, R.en
dc.contributor.authorEldin, S. M.en
dc.date.accessioned2024-04-05T16:32:18Z-
dc.date.available2024-04-05T16:32:18Z-
dc.date.issued2023-
dc.identifier.citationSingh, G, Sharma, S, Seikh, AH, Li, C, Zhang, Y, Rajkumar, S, Kumar, A, Singh, R & Eldin, SM 2023, 'A novel study on the influence of graphene-based nanofluid concentrations on the response characteristics and surface-integrity of Hastelloy C-276 during minimum quantity lubrication', Heliyon, Том. 9, № 9, e19175. https://doi.org/10.1016/j.heliyon.2023.e19175harvard_pure
dc.identifier.citationSingh, G., Sharma, S., Seikh, A. H., Li, C., Zhang, Y., Rajkumar, S., Kumar, A., Singh, R., & Eldin, S. M. (2023). A novel study on the influence of graphene-based nanofluid concentrations on the response characteristics and surface-integrity of Hastelloy C-276 during minimum quantity lubrication. Heliyon, 9(9), [e19175]. https://doi.org/10.1016/j.heliyon.2023.e19175apa_pure
dc.identifier.issn2405-8440-
dc.identifier.otherFinal2
dc.identifier.otherAll Open Access, Gold, Green3
dc.identifier.otherhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-85169828705&doi=10.1016%2fj.heliyon.2023.e19175&partnerID=40&md5=71f4220e9f55eb7bdda9fcb2a721272f1
dc.identifier.otherhttp://www.cell.com/article/S2405844023063831/pdfpdf
dc.identifier.urihttp://elar.urfu.ru/handle/10995/130762-
dc.description.abstractIn present investigation, the impact of nanoparticle concentration on the machining accomplishment of Hastelloy C-276 has been examined in turning operation. The outputs like temperature, surface roughness, chip reduction coefficient (CRC), tool wear, and friction coefficient along with angle of shear have been estimated. The graphene nanoparticles (GnP) have been blended into soybean oil in distinct weight/volume ratio of 0.5, 1 and 1.5%. The experimental observations revealed that higher concentration of nanoparticles has enhanced the heat carrying capacity of amalgamation by 12.28%, surface roughness (27.88%), Temperature (16.8%), tool wear (22.5%), CRC (17.5%), coefficient of friction (46.36%) and shear angle (15%). Scanning electron microscopy identified nose wear, abrasion, adhesion and loss of tool coating. Further, lower tool wear has been noticed at 1.5% concentration, while the complete failure of insert has been reported during 116 m/min, 0.246 mm/rev having 0.5% concentration. ANOVA results exhibited that surface roughness is highly influenced by speed rate (41.66%) trailed by feed rate (28.16%) and then after concentration (13.68%). Temperature is dominated by cutting speed (69.31%), concentration (14.53%) and feed rate (13.25%). Likewise, tool wear was majorly altered by cutting speed (67.2%) accompanied by feed rate (23.90%) and thirdly concentration of GnP (5.03%). © 2023en
dc.description.sponsorshipThe authors are thankful to the RIC, I.K.G.P.T.U, Kapurthala; Head, Department of Production Engineering G.N.D.E.C, Ludhiana and Dean Research Chandigarh University, Mohali, Punjab, India for providing research facilities to conduct these investigations.en
dc.format.mimetypeapplication/pdfen
dc.language.isoenen
dc.publisherElsevier Ltden
dc.rightsinfo:eu-repo/semantics/openAccessen
dc.rightscc-byother
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/unpaywall
dc.sourceHeliyon2
dc.sourceHeliyonen
dc.subjectCONCENTRATIONen
dc.subjectGRAPHENE NANOPARTICLEen
dc.subjectHASTELLOY C-276en
dc.subjectSCANNING ELECTRON MICROSCOPYen
dc.subjectSURFACE ROUGHNESSen
dc.titleA novel study on the influence of graphene-based nanofluid concentrations on the response characteristics and surface-integrity of Hastelloy C-276 during minimum quantity lubricationen
dc.typeArticleen
dc.typeinfo:eu-repo/semantics/articleen
dc.type|info:eu-repo/semantics/publishedVersionen
dc.identifier.doi10.1016/j.heliyon.2023.e19175-
dc.identifier.scopus85169828705-
local.contributor.employeeSingh, G., Department of Mechanical Engineering, I.K. Gujral Punjab Technical University, Punjab, Kapurthala, India, Department of Mechanical Engineering, Chandigarh University, Gharuan, Punjab, Mohali, Indiaen
local.contributor.employeeSharma, S., Mechanical Engineering Department, University Center for Research & Development, Chandigarh University, Punjab, Mohali, 140413, India, School of Mechanical and Automotive Engineering, Qingdao University of Technology, Qingdao, 266520, Chinaen
local.contributor.employeeSeikh, A.H., Mechanical Engineering Department, College of Engineering, King Saud University, P.O. Box 800, Riyadh, 11421, Saudi Arabiaen
local.contributor.employeeLi, C., School of Mechanical and Automotive Engineering, Qingdao University of Technology, Qingdao, 266520, Chinaen
local.contributor.employeeZhang, Y., School of Mechanical and Automotive Engineering, Qingdao University of Technology, Qingdao, 266520, Chinaen
local.contributor.employeeRajkumar, S., Department of Mechanical Engineering, Faculty of Manufacturing, Institute of Technology, Hawassa University, Ethiopiaen
local.contributor.employeeKumar, A., Department of Nuclear and Renewable Energy, Ural Federal University Named After the First President of Russia, Boris Yeltsin, 19 Mira Street, Ekaterinburg, 620002, Russian Federationen
local.contributor.employeeSingh, R., Uttaranchal Institute of Technology, Uttaranchal University, Dehradun, 248007, India, Department of Project Management, Universidad Internacional Iberoamericana, C.P., Campeche, 24560, Mexicoen
local.contributor.employeeEldin, S.M., Center of Research, Faculty of Engineering, Future University in Egypt, New Cairo, 11835, Egypten
local.issue9-
local.volume9-
dc.identifier.wos001163472800001-
local.contributor.departmentDepartment of Mechanical Engineering, I.K. Gujral Punjab Technical University, Punjab, Kapurthala, Indiaen
local.contributor.departmentDepartment of Mechanical Engineering, Chandigarh University, Gharuan, Punjab, Mohali, Indiaen
local.contributor.departmentMechanical Engineering Department, University Center for Research & Development, Chandigarh University, Punjab, Mohali, 140413, Indiaen
local.contributor.departmentSchool of Mechanical and Automotive Engineering, Qingdao University of Technology, Qingdao, 266520, Chinaen
local.contributor.departmentMechanical Engineering Department, College of Engineering, King Saud University, P.O. Box 800, Riyadh, 11421, Saudi Arabiaen
local.contributor.departmentDepartment of Mechanical Engineering, Faculty of Manufacturing, Institute of Technology, Hawassa University, Ethiopiaen
local.contributor.departmentDepartment of Nuclear and Renewable Energy, Ural Federal University Named After the First President of Russia, Boris Yeltsin, 19 Mira Street, Ekaterinburg, 620002, Russian Federationen
local.contributor.departmentUttaranchal Institute of Technology, Uttaranchal University, Dehradun, 248007, Indiaen
local.contributor.departmentDepartment of Project Management, Universidad Internacional Iberoamericana, C.P., Campeche, 24560, Mexicoen
local.contributor.departmentCenter of Research, Faculty of Engineering, Future University in Egypt, New Cairo, 11835, Egypten
local.identifier.pure44651278-
local.description.ordere19175-
local.identifier.eid2-s2.0-85169828705-
local.identifier.wosWOS:001163472800001-
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