首页> 外文会议>International symposium on liquid metal processing amp; casting 2013 >REFINEMENT OF PRIMARY AND EUTECTIC SILICON PARTICLES IN HYPEREUTECTIC Al-Si ALLOYS USING AN APPLIED ELECTRIC POTENTIAL
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REFINEMENT OF PRIMARY AND EUTECTIC SILICON PARTICLES IN HYPEREUTECTIC Al-Si ALLOYS USING AN APPLIED ELECTRIC POTENTIAL

机译:应用电势对过共晶Al-Si合金中主晶和共晶硅颗粒的细化

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The effects of applied electric current on the cast microstructure of hypoeutectic Al-13 wt.% Si and Al-20 wt.% Si alloys have been investigated. This involved, with a constant voltage power supply, an application of an electric current density of about 500 tnA/cm2 of melt surface area to laboratory-size ingots during solidification in a metal mold. In general, the applied electric current refined the cast microstructure of the hypereutectic Al-Si alloys. Specifically, the electric current did not modify the eutectic silicon particle, but changed the size distribution of the primary silicon particles by increasing the population of comparatively smaller size particles. The extent of the observed cast microstructure refinement was less than the reported effects of applied electric current in the technical literature and is significantly less than the effects of the traditional refinement obtained by addition of strontium and phosphorus to the molten metal prior to casting.
机译:已经研究了施加的电流对亚共晶Al-13重量%Si和Al-20重量%Si合金的铸造显微组织的影响。这涉及在恒定电压电源下,在金属模具中固化期间,将约500 tnA / cm2熔体表面积的电流密度施加到实验室尺寸的铸锭上。通常,施加的电流改善了过共晶Al-Si合金的铸造显微组织。具体而言,电流不会改变共晶硅颗粒,而是通过增加相对较小尺寸的颗粒的数量来改变初级硅颗粒的尺寸分布。观察到的铸造显微组织细化的程度小于技术文献中所报告的施加电流的效果,并且显着小于通过在铸造之前向熔融金属中添加锶和磷而获得的传统细化的效果。

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