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Effect of SiC Reinforcement on Microstructure and Mechanical Properties of Aluminum Metal Matrix Composite

机译:SIC加固对铝金属基质复合材料微观结构和力学性能的影响

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Aluminum reinforced with silicon carbide composites areextensively used in automobile industries and aerospaceowing to their favourable microstructure and improved mechanical behaviour with respect to pure aluminium but at a lower cost.Aluminium is remarkable for the low density and its ability to resist corrosion.The aim of present study istoevaluate the mechanical and microstructural properties of aluminum with silicon carbide(average particle size 30-45um)reinforced in varying weight percentages(wt %)ranging from 0-15 wt% in a step of 5% each.Ultimate tensile strength,micro hardness and density of the fabricated composites were investigated as a function of varying SiC wt%.Microstructure analysis was carried out on casted composites using optical microscopy and scanning electron microscopy.From micrographs it is clear that fair distribution of reinforcing particles in the matrix and also observed some clustering and porosity in the cast material.Results revealed that,the addition of SiC reinforcement in the aluminum matrix increases the hardness and ultimate tensile strength gradually from 23 HV to 47 HV and 84 MPa to 130 MPa respectively.
机译:用碳化硅复合材料加固铝,在汽车行业中使用,并在其有利的微观结构和改善纯铝的机械行为,但以较低的成本提高了机械行为。铝对低密度具有显着性,其抵抗腐蚀的目的。目前的目的研究是对碳化硅(平均粒径30-45um)的铝的机械和微观结构性能,其在0-15wt%中加强的5%的0-15wt%,每次拉伸强度,微硬度研究了制造复合材料的密度作为不同的SiC WT%的函数。使用光学显微镜和扫描电子显微镜在浇铸复合材料上进行荧光复合材料的函数。从显微照片清楚地清楚地分布在基质中加强颗粒的相当分布,并观察到铸造材料中的一些聚类和孔隙度。结果显示,添加铝基中的SiC加固分别从23HV至47HV和84MPa逐渐增加了硬度和最终拉伸强度。

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