Structural, wear and thermal behaviour of Cu–Al2O3–graphite hybrid metal matrix composites
Author | Mittal, P. |
Author | Paswan, M.K. |
Author | Sadasivuni, Kishor Kumar |
Author | Gupta, P. |
Available date | 2022-03-23T06:54:34Z |
Publication Date | 2020 |
Publication Name | Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications |
Resource | Scopus |
Identifier | http://dx.doi.org/10.1177/1464420720929377 |
Abstract | The aim of the present study is to investigate the structural, wear and thermal behaviour of Cu–Al2O3–graphite hybrid metal matrix composites. Copper matrix composites with Al2O3–graphite reinforcement (0.5-0.5, 1.0-1.0, 1.5-1.5 and 2.0-2.0 wt%) were prepared by stir casting process. Phase, microstructure, density, hardness, wear, compressive strength and specific heat of prepared samples have been investigated. X-ray diffraction revealed that there is no intermediate phase formation between matrix and reinforcement phase as a result of interfacial bonding between them. Microstructure study shows the uniform distribution of Al2O3–graphite particles in the Cu-matrix. Density and hardness were found to decrease with increase in reinforcements percentage whereas the compressive strength was found to increase as the amount of reinforcements was increased. Composite containing 2.0 wt% reinforcements showed the maximum resistance to wear. Specific heat was found to increase with addition of reinforcements; however, this increase was very marginal. Structural, wear and thermal properties of these Cu matrix-based hybrid metal matrix composites were found to be dependent on the reinforcements concentration. It is expected that the present composite will be useful for heat exchanger and heat sink applications |
Sponsor | The authors acknowledge the contribution of Mr Heman Singh Hansda (Technical Assistant, Department of Mechanical Engineering, National Institute of Technology ? Jamshedpur), Central Instrumentation Facility (Birla Institute of Technology ? Mesra) and Sophisticated Analytical Instruments Facility (Indian Institute of Technology ? Madras) in providing testing and measurement facilities of the samples. |
Language | en |
Publisher | SAGE Publications Ltd |
Subject | Metal matrix composite (MMC) scanning electron microscopy specific heat stir casting wear X-ray diffraction |
Type | Article |
Pagination | 1154-1164 |
Issue Number | 8 |
Volume Number | 234 |
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