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Fabrication and characterization of Al356/SiC_p semisolid composites by injecting SiC_p containing composite powders

机译:注入含SiC_p复合粉末的Al356 / SiC_p半固体复合材料的制备与表征

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Al356/5 vol.% SiC_p cast composites were fabricated by the injection of reinforcement particles into the melt in three different forms, i.e. as untreated SiC_p, milled particulate Al-SiC_p composite powder, and milled Al-SiC_p-Mg composite powder. The resultant composite slurries were then cast in the semisolid temperature range of the alloy, upon which the effects of the type of injected powder on the distribution and incorporation of the reinforcement particles, along with the hardness of the cast composites, were investigated. Injection of milled composite powders resulted in considerable improvement in SiC_p wetting as well as the incorporation and distribution of SiC_p in the Al356 matrix alloy. Al356/5 vol.% SiC_p composite with well dispersed reinforcement particles of less than 3 μm average diameter was successfully produced by injecting Al-SiC_p-Mg composite powder into the melt. The best microstructural characteristics in terms of the reinforcement incorporation and distribution, and the highest hardness value of the cast composites, were achieved when magnesium was added through the injected composite powder and not directly into the melt.
机译:通过将增强颗粒以三种不同的形式注入熔体中来制备Al356 / 5 vol。%SiC_p铸造复合材料,即三种形式:未经处理的SiC_p,研磨的颗粒状Al-SiC_p复合粉末和研磨的Al-SiC_p-Mg复合粉末。然后将所得的复合浆料在合金的半固态温度范围内进行浇铸,在此温度范围内,研究了注入粉末的类型对增强颗粒的分布和掺入的影响以及浇铸复合材料的硬度。研磨复合粉末的注射大大改善了SiC_p的润湿性以及SiC_p在Al356基体合金中的结合和分布。通过将Al-SiC_p-Mg复合粉末注入熔体中,成功生产出平均粒径小于3μm的分散良好的增强颗粒的Al356 / 5 vol。%SiC_p复合材料。当通过注入的复合粉末而不是直接将镁添加到熔体中时,在增强材料的结合和分布方面,最佳的微观结构特征以及铸造复合材料的最高硬度值得以实现。

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