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Microstructure, mechanical and tribological properties of Al/Cu functionally graded material fabricated through powder metallurgy

dc.contributor.authorBoggarapu, Vasavi
dc.contributor.authorSreekanth, P.S. Rama
dc.contributor.authorPeddakondigalla, Venkateswara Babu
dc.date.accessioned2026-01-13T13:10:30Z
dc.date.issued2024
dc.descriptionJournal Article, Faculty of Engineering (Chemical Engineering)) -- North-West University, Mahikeng Campus
dc.description.abstractMechanical and tribological behavior of five layered Al/Cu functionally graded material (FGM) produced by powder metallurgy was presented in the study. Compressive strength and hardness was evaluated on Universal testing machine and Vickers hardness tester respectively. Tribological characteristics in terms of frictional coefficient and wear rate was examined on pin-on-disc tribometer under the influence of different normal loading, sliding velocity and sliding distance conditions. FGM showed varied hardness along the thickness direction and maximum hardness of 86 HV was found at graded region due to the formation of intermetallic compound (CuAl2). Compressive strength of FGM was 40.9% and 22.7% greater than pure Al and pure Cu samples. Al/Cu FGM exhibited superior friction and wear characteristics over base materials. To understand the failure mechanisms on fracture and worn out surfaces, they were observed under Scanning Electron Microscopy (SEM).
dc.description.sustainableAffordable and Clean Energy
dc.identifier.citationBoggarapu, V. et al. 2024. Microstructure, mechanical and tribological properties of Al/Cu functionally graded material fabricated through powder metallurgy. Journal of Engineering Research 12 (2024) 502–510 [https://doi.org/10.1016/j.jer.2023.100119]
dc.identifier.urihttp://hdl.handle.net/10394/45076
dc.language.isoen
dc.publisherElsevier
dc.subjectFunctionally graded material
dc.subjectHardness
dc.subjectCompressive strength
dc.subjectSliding wear
dc.subjectCoefficient of friction
dc.titleMicrostructure, mechanical and tribological properties of Al/Cu functionally graded material fabricated through powder metallurgy
dc.typeArticle

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