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Eutectic Growth Mode in Strontium, Antimony and Phosphorus Modified Hypoeutectic Al-Si Foundry Alloys

机译:锶,锑和磷改性的亚共晶Al-Si铸造合金的共晶生长模式

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摘要

The effect of strontium (Sr), antimony (Sb) and phosphorus (P) on nucleation and growth mode of the eutectic in hypoeutectic Al-l0mass percent Si alloys has been investigated by electron back-scattering diffraction (EBSD) mapping. Specimens were prepared from a hypoeutectic Al-10 mass percent Si base alloy, adding different levels of Strontium, antimony and phosphorus for modification of eutectic silicon. By comparing the orientation of the aluminium in the eutectic to that of the surrounding primary aluminium dendrites, the solidification mode of the eutectic could be determined. The results of these studies show that the eutectic nucleation mode, and subsequent growth mode, is strongly dependent on additive elements. The EBSD mapping results indicate that the eutectic grew from the primary phase in unmodified and phosphorus -containing alloys. When the eutectic was modified by Strontium or antimony, eutectic grains nucleated and grew separately from the primary dendrites.
机译:通过电子背散射衍射(EBSD)作图研究了锶(Sr),锑(Sb)和磷(P)对次共晶Al-10质量%Si合金中共晶成核和生长模式的影响。由亚共晶的Al-10质量百分比的Si基合金制备试样,并添加不同含量的锶,锑和磷以改性共晶硅。通过将共晶中铝的取向与周围的初生铝枝晶的取向进行比较,可以确定共晶的凝固模式。这些研究的结果表明,共晶成核模式和随后的生长模式强烈依赖于添加元素。 EBSD作图结果表明,在未改性的含磷合金中,共晶从初生相开始。当共晶被锶或锑改性时,共晶晶粒成核并与原始枝晶分开生长。

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