Investigation on Microstructure, Wear Behavior and Microhardness of Al−Si/SiC Nanocomposite
- Authors: Bahmani E.1, Abouei V.1, Shajari Y.1, Razavi S.H.2, Bayat O.3
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Affiliations:
- Department of Materials Science and Engineering, Karaj Branch
- School of Metallurgy and Materials Engineering
- Department of Materials Science and Engineering
- Issue: Vol 54, No 4 (2018)
- Pages: 350-358
- Section: Article
- URL: https://bakhtiniada.ru/1068-3755/article/view/230783
- DOI: https://doi.org/10.3103/S1068375518040038
- ID: 230783
Cite item
Abstract
Aluminum matrix nano-composites have been widely used in various fields such as aerospace, automobile, and packing industries. In this study, the effect of nano-SiC content on the microst-ructure, wear resistance and micro-hardness of Al–Si/SiC nano-composite was investigated. In this regard, Al–Si matrix was reinforced by different amounts of nano-SiC: 0, 0.5, 1, 1.5, 3, 5, 10 wt %. The results showed that with increasing the nano-SiC weight ratio, nano-particles are agglomerated and unsuitable sintering increases the porosity, as pores and cavities. For more than 1.5% weight ratio of nano-SiC in the matrix, the wear resistance and the micro-hardness decreased. The results of the wear test, scanning electron microscopy, energy dispersive X-ray spectroscopy and worn surfaces showed that the dominant wear mechanism is controlled by nano-SiC contents. This study indicated that with adding nano-SiC particles more than the optimal content, wear resistance and micro-hardness of Al–Si/SiC nano-composite increased more than twice.
Keywords
About the authors
E. Bahmani
Department of Materials Science and Engineering, Karaj Branch
Email: abouei@iust.ac.ir
Iran, Islamic Republic of, Karaj
V. Abouei
Department of Materials Science and Engineering, Karaj Branch
Author for correspondence.
Email: abouei@iust.ac.ir
Iran, Islamic Republic of, Karaj
Y. Shajari
Department of Materials Science and Engineering, Karaj Branch
Email: abouei@iust.ac.ir
Iran, Islamic Republic of, Karaj
S. H. Razavi
School of Metallurgy and Materials Engineering
Email: abouei@iust.ac.ir
Iran, Islamic Republic of, Tehran
O. Bayat
Department of Materials Science and Engineering
Email: abouei@iust.ac.ir
Iran, Islamic Republic of, Hamedan
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