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首页> 外文期刊>Transactions of the Indian Institute of Metals >SiC and Al2O3 Reinforced Aluminum Metal Matrix Composites for Heavy Vehicle Clutch Applications
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SiC and Al2O3 Reinforced Aluminum Metal Matrix Composites for Heavy Vehicle Clutch Applications

机译:用于重型车辆离合器应用的SiC和Al2O3增强铝金属基质复合材料

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摘要

Aluminium metal matrix composite is one of the most promising engineering material and gradually emerging technology in automobile industries. There are usage of this composite material in certain critical applications like clutch pressure and face plate assembly due to their enhanced mechanical, wear and physical properties. In the present study, A356 aluminum alloy reinforced with SiC and Al2O3 particle was made by stir casting process. The effects of different volume fractions of SiC and Al2O3 particle reinforcement on microstructure and mechanical properties have been investigated. The tensile, yield strength and hardness have been increased in the particulate containing composites. As compared to base alloy, 20 % volume fraction of SiC reinforced composites showed 16 % increase in tensile strength and 10 % volume fraction of Al2O3 reinforced composites showed 19 % increase in tensile strength. The yield strength of 20 % SiC and 10 % Al2O3 containing samples nearly 50 % higher than those of the base alloy. Dislocation density, precipitation hardening and changes in grain size are the main mechanisms enhancing the mechanical properties of particulate reinforced composites. The 20 % SiC and 10 % Al2O3 reinforced composites have been identified as optimized composites for clutch pressure/face plate application.
机译:铝金属基质复合材料是汽车行业中最有前途的工程材料和逐步新兴技术之一。由于它们增强的机械,磨损和物理性质,在离合器压力和面板组件等某些关键应用中存在这种复合材料。在本研究中,通过搅拌浇铸过程制备了用SiC和Al2O3颗粒加固的A356铝合金。研究了SiC和Al2O3颗粒增强对微观结构和机械性能的不同体积分数的影响。在含颗粒的复合材料中增加了拉伸,屈服强度和硬度。与碱合金相比,20%的SiC增强复合材料的体积分数显示出16%的拉伸强度增加,10%的Al 2 O 3增强复合材料的体积分数显示拉伸强度增加19%。屈服强度为20%SiC和10%Al 2 O 3的样品比基础合金的样品高近50%。位错密度,沉淀硬化和晶粒尺寸的变化是增强颗粒增强复合材料的机械性能的主要机制。已经将20%SiC和10%Al2O3增强复合材料鉴定为离合器压力/面板应用的优化复合材料。

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