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Processing and mechanical properties of aluminium-silicon carbide metal matrix composites

机译:铝 - 碳化硅金属基复合材料的加工和力学性能

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In this study, aluminium-silicon carbide (Al-SiC) metal matrix composites (MMCs) of different compositions were prepared under different compaction loads. Three different types Al-SiC composite specimens having 10%, 20% and 30% volume fractions of silicon carbide were fabricated using conventional powder metallurgy (PM) route. The specimens of different compositions were prepared under different compaction loads 10 ton and 15 ton. The effect of volume fraction of SiC particulates and compaction load on the properties of Al/SiC composites were investigated. The obtained results show that density and hardness of the composites are greatly influenced by volume fraction of silicon carbide particulates. Results also show that density, hardness and microstructure of Al-SiC composites are significantly influenced depending on the compaction load. The increase in the volume fraction of SiC enhances the density and hardness of the Al/SiC composites. For 15 ton compaction load, the composites show increased density and hardness as well as improved microstructure than the composites prepared under 10 ton compaction load. Furthermore, optical micrographs reveal that SiC particulates are uniformly distributed in the Al matrix.
机译:在该研究中,在不同的压实载荷下制备不同组合物的碳化铝 - 碳化硅(Al-SiC)金属基质复合材料(MMC)。使用常规的粉末冶金(PM)途径制造具有10%,20%和30%碳化硅体积分数的三种不同类型的碳化硅。在不同的压实载荷10吨和15吨下制备不同组合物的标本。研究了SiC颗粒的体积分数和压实负荷对Al / SiC复合材料的性能的影响。得到的结果表明,复合材料的密度和硬度受碳化硅颗粒的体积分数的大大影响。结果还表明,Al-SiC复合材料的密度,硬度和微观结构根据压实负载而显着影响。 SiC体积分数的增加增强了Al / SiC复合材料的密度和硬度。对于15吨压实负载,复合材料显示出的密度和硬度增加,以及比在10吨压实负载下制备的复合材料的改善的微观结构。此外,光学显微照片揭示了SiC颗粒在Al基质中均匀地分布。

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