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Investigations on mechanical properties of aluminum hybrid composites

机译:铝杂化复合材料力学性能的研究

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A double stir casting process was used to fabricate aluminum composites reinforced with various volume fractions of 2, 4, 6, and 8wt% RHA and SiC particulates in equal proportions. Properties such as hardness, density, porosity and mechanical behavior of the unreinforced and Al/x%RHA/x%SiC (x=2, 4, 6, and 8wt%) reinforced hybrid composites were examined. Scanning electron microscope (model JSM-6610LV) was used to study the microstructural characterization of the composites. It was observed that the hardness and porosity of the hybrid composite increased with increasing reinforcement volume fraction and density decreased with increasing particle content. It was also observed that the UTS and yield strength increase with an increase in the percent weight fraction of the reinforcement particles, whereas elongation decreases with the increase in reinforcement. The increase in strength of the hybrid composites is probably due to the increase in dislocation density. A systematic study of the base alloy and composites was done using the Brinell hardness measurement and the corresponding age hardening curves were obtained. It was observed that in comparison to that of the base aluminum alloy, the precipitation kinetics of the composites were accelerated by adding the reinforcement. This effectively reduced the time for obtaining the maximum hardness by the aging heat treatment.
机译:使用双搅拌铸造工艺来制造铝复合材料,该复合材料以相同的比例用2、4、6和8wt%的RHA和SiC颗粒的各种体积分数增强。检查了未增强的和Al / x%RHA / x%SiC(x = 2、4、6和8wt%)增强杂化复合材料的性能,例如硬度,密度,孔隙率和机械性能。使用扫描电子显微镜(型号JSM-6610LV)研究复合材料的微观结构特征。观察到杂化复合材料的硬度和孔隙率随增强体积分数的增加而增加,密度随颗粒含量的增加而降低。还观察到,UTS和屈服强度随增强颗粒的重量百分数的增加而增加,而伸长率随增强物的增加而降低。杂化复合材料强度的增加可能是由于位错密度的增加。使用布氏硬度测量对基础合金和复合材料进行了系统研究,并获得了相应的时效硬化曲线。观察到,与基础铝合金相比,通过添加增强物来加速复合材料的沉淀动力学。这有效地减少了通过时效热处理获得最大硬度的时间。

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