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Mechanical characterization of SiC particulate E-glass fiber reinforced Al 3003 hybrid metal matrix composites

机译:SiC颗粒和E-玻璃纤维增​​强Al 3003杂交金属基质复合材料的机械表征

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Metal matrix composites constitute a class of low cost high quality materials which offer high performance for various industrial applications. The orientation of this research is towards the study of mechanical properties of as cast silicon carbide (SiC) particulates and Short E-Glass fibers reinforced Aluminum matrix composites (AMCs). The Hybrid metal matrix composite is developed by reinforcing SiC particulates of 100 microns and short E-Glass fibers of 2-3 mm length with Al 3003 in different compositions. The vortex method of stir casting was employed, in which the reinforcements were introduced into the vortex created by the molten metal by means of mechanical stirrer. The mechanical properties of the prepared metal matrix composites were analyzed. From the studies it was noticed that an improvement in mechanical properties of the reinforced alloys compared to unreinforced alloys.
机译:金属基复合材料构成一类低成本的高品质材料,可为各种工业应用提供高性能。该研究的定向是展望作为铸造碳化硅(SiC)颗粒的机械性能和短e-玻璃纤维增​​强铝基基复合材料(AMCS)的机械性能。通过在不同组合物中加强100微米的SiC颗粒和2-3mm长度的短e-玻璃纤维的SiC颗粒和短的E-玻璃纤维的杂种金属基质复合材料。采用搅拌铸造的涡流方法,其中通过机械搅拌器将增强剂引入由熔融金属产生的涡旋中。分析了制备的金属基质复合材料的机械性能。从研究中,注意到与未粘合的合金相比,增强合金的力学性能改善。

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