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Simultaneous Refinement of Primary Si and Modification of Eutectic Si in A390 Alloy Assisting by Sr-Modifier and Serpentine Pouring Channel Process

机译:Sr-改性剂-蛇纹石浇注通道辅助辅助同时提纯A390合金中的初生Si和共晶Si

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摘要

In this study, A390 alloy was prepared using the combined process of a water-cooled copper serpentine pouring channel (SPC) and strontium (Sr) modifier, in order to simultaneously refine primary silicon (Si) and modify eutectic silicon (Si). The nucleation and growth mechanisms of the Si phase were discussed by morphology analysis and non-isothermal analytical kinetics. The results indicate that the size of primary Si is refined to 25.2–28.5 µm and the morphology of eutectic Si is modified from acicular into fibrous. The serpentine pouring channel process stimulates primary Si nucleation due to chilling effect and has no influence on eutectic Si nucleation. Impacts of Sr-modifier on primary and eutectic Si are similar, including three aspects: (1) poisoning of the nucleation site; (2) decreasing the interface energy between Si phase and liquid; (3) raising the activation energy for diffusion across solid-liquid interface. The content of Sr determines which one of the three aspects mentioned above is the dominant factor to promote or restrain the nucleation and growth of the primary and eutectic Si in hypereutectic Al-Si alloy.
机译:在这项研究中,A390合金是通过水冷铜蛇形浇铸通道(SPC)和锶(Sr)改性剂的组合工艺制备的,以便同时精炼原生硅(Si)和改性共晶硅(Si)。通过形态分析和非等温分析动力学讨论了Si相的形核和生长机理。结果表明,原始Si的尺寸可细化为25.​​2-28.5 µm,共晶Si的形态从针状变为纤维状。蛇形浇注通道过程由于冷却效应而刺激了主要的Si成核,并且对共晶Si成核没有影响。 Sr-改性剂对原硅和共晶硅的影响相似,包括三个方面:(1)成核位点中毒; (2)降低Si相与液体之间的界面能; (3)提高活化能以扩散穿过固-液界面。 Sr的含量决定了上述三个方面中的哪一个是促进或抑制过共晶Al-Si合金中初晶和共晶Si的成核和生长的主要因素。

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