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Microstructure Studies in SiC Particle Reinforced Aluminium Matrix Composites Processed by Solidification Route

机译:SiC颗粒增强铝基基复合材料的微观结构研究通过凝固途径加工

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Solidification structure of Al-Cu-SiC_p and Al-Mg-SiC_p composites solidified under different solidification rates have been studied. Al-Cu-SiC_p composites solidified in large size permanent moulds exhibit conical-shaped particle-depleted zone in the bottom part of the casting. Columnar grains were observed in the particle depleted zone, while the particle-containing region exhibited equiaxed grain morphology. In the absence of convection, the presence of SiC particles promote matrix grain refinement. Matrix dendrite arm spacing (DAS) was not significantly altered by the presence of SiC particles. In the case of Al-Si-Mg-SiC composites, size of eutectic silicon and also its morphology changes from needle like to equiaxed. This is attributed to the heterogeneous nucleation of eutectic Si on SiC particles. Under all the solidification conditions studied in the present investigation, SiC particles are found to be rejected by the growing dendrites.
机译:研究了在不同凝固率下固化的Al-Cu-SiC_P和Al-Mg-SiC_P复合材料的凝固结构。在大尺寸的永久模具中凝固的Al-Cu-SiC_P复合材料在铸件的底部具有锥形颗粒耗尽区。在颗粒耗尽区中观察柱状晶粒,而含颗粒的区域表现出等式的晶粒形态。在没有对流的情况下,SiC颗粒的存在促进基质晶粒细化。基质树突臂间距(DAS)未通过SiC颗粒显着改变。在Al-Si-Mg-SiC复合材料的情况下,共晶硅的尺寸以及其形态的形态从像素一样变化为等式。这归因于SiC颗粒对共晶Si的异质成核。在本研究中研究的所有凝固条件下,发现SiC颗粒被生长的树突拒绝。

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