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Characterization of silicon carbide particulate reinforced AA6061 aluminum alloy composites produced via stir casting

机译:通过搅拌铸造产生的碳化硅颗粒增强AA6061铝合金复合材料的碳化硅颗粒颗粒的表征

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Stir casting is an economical method to produce aluminum matrix composites (AMCs). In the present work, Aluminum alloy AA6061 reinforced with various amounts (0, 5, 10 and 15wt. %) of SiC particles were prepared. The matrix alloy was melted in a furnace and stirred to form a vortex. SiC particles were added to the periphery of the vortex and the composite melt was solidified in a permanent mold. The microstructures of the AMCs were studied using optical and scanning electron microscopy. SiC particles were observed to refine the grains and were distributed homogeneously in the aluminum matrix. SiC particle clusters were also seen in a few places. SiC particles were properly bonded to the aluminum matrix. The reinforcement of SiC particles improved the microhardness and ultimate tensile strength (UTS) of the AMCs. The details of fracture morphology are also presented in this paper.
机译:搅拌铸造是生产铝基复合材料(AMC)的经济方法。在本作的工作中,制备铝合金AA6061以各种量(0,5,10和15wt.%)的SiC颗粒增强。基质合金在炉中熔化并搅拌以形成涡旋。将SiC颗粒加入到涡旋的周边,并在永久模具中固化复合熔体。使用光学和扫描电子显微镜研究了AMC的微观结构。观察SiC颗粒以优化晶粒并在铝基中均匀分布。在几个地方也看到了SiC粒子簇。将SiC颗粒适当地键合到铝基质中。 SiC颗粒的增强改善了AMCs的显微硬度和最终拉伸强度(UTS)。本文还提出了骨折形态的细节。

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