铝基复合材料性能研究进展

B. Subramaniam, V. Purusothaman, Sibi Mayuran Karuppusamy, Shree Hari Ganesh, Raj Kumar Markandan
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引用次数: 8

摘要

当前,生产机械部件的全球工业正朝着使用复合材料的方向发展,在不影响所用材料特性的同时减轻重量。这种新型复合材料与各种增强材料如SiC、b4c、al2o3、MgO等结合时,可提供特定的所需性能,广泛应用于航空航天、汽车和船舶工业等各个行业。这种以Al7075为基材的性能可定制的金属基复合材料可采用搅拌铸造、高端球磨、超声辅助铸造、粉末冶金、挤压铸造、搅拌摩擦铸造等多种技术制备,其中搅拌铸造方法被许多研究人员首选,因为搅拌铸造方法可以在整个金属基体中提供更好的增强颗粒分布。从多位作者的研究中可以明显看出,用上述陶瓷增强基材Al7075时,密度降低,硬度、抗压强度和耐磨性提高。本文讨论了铝增强复合材料的物理力学性能随粒径变化的影响、增强后的效果以及其他加工和制造方法的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review on properties of aluminium metal matrix composites
: Nowadays, the global industries producing mechanical components are moving towards the usage of composites to reduce weight at the same time without compromising with characteristics of the material being used. This new combination of material provides specific desired properties when combined with various reinforcement materials like SiC, B 4 C, Al 2 O 3 , MgO etc., It is widely used in various industries like aerospace, automobile and marine industries. This property specific tailorable metal matrix composite with Al7075 as the base material can be fabricated using various techniques such as stir casting, high end ball milling, ultrasonic assisted casting, powder metallurgy, squeeze casting friction stir casting etc., out of which stir casting method is preferred by many researchers as stir casting method is seen to provide better distribution of reinforcement particles throughout the metal matrix. It is evident from the research of various authors that when the base material Al7075 is reinforced with the above-mentioned ceramic, it is found that there is a decrease in density and increase in hardness, compressive strength and wear resistance. Here, both physical and mechanical behaviour of aluminium reinforced composites with the effect of the particle size changes, effects after reinforcement and other processing and fabrication methods have been discussed.
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