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Phase-field simulation of microstructure evolution during the initial stage of rapid solidification of alloys

机译:合金快速凝固初期微观组织演变的相场模拟

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Microstructure evolution during the rapid solidification of Fe-C alloys is simulated using the phase-field model for binary alloys with thin interface limit parameters. The heat transfer equation is solved simultaneously to study the heat flow and the effect of latent heat generation on the microstructure. The calculations have been carried out using a double grid method and parallel computing technique. The competitive growth of growing cells was reproduced, and the cellular/dendritic transition was also observed. Since there is a negative thermal gradient in front of the leading tip, growth can be regarded as unidirectional free dendrite growth. The microstructure changes depending on the preferred growth orientation and the secondary arms start developing only on one side with the increase of the tilted angle. With the two-dimensional heat diffusion effect, negative thermal gradient appears on both the solid and liquid side of the leading tip.
机译:Fe-C合金快速凝固过程中的微观组织演变是使用相界面模型模拟的,其界面极限参数薄。同时求解传热方程,以研究热流和潜热产生对微观结构的影响。使用双网格方法和并行计算技术进行了计算。再现了生长中的细胞的竞争性生长,并且还观察到了细胞/树突过渡。由于前端的温度梯度为负,因此可以将其视为单向自由枝晶生长。微观结构根据优选的生长方向而变化,并且随着倾斜角的增加,次要臂仅在一侧开始发育。借助二维热扩散效应,负温度梯度会出现在前端的固体和液体两面。

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