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Investigation Into Microsegregation During Solidification Of A Binary Alloy By Phase-field Simulations

机译:通过相场模拟研究二元合金凝固过程中的微观偏析

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Microsegregation within the columnar dendritic array is analyzed by performing a two-dimensional phase-field simulation. The influence of microstructure morphology on microsegregation is studied for various back diffusion conditions. Under the condition of no back diffusion, it is found that for the region without second dendrite arms the simulation result agrees well with the Scheil equation, but for the region with well developed second dendrite arms there is a severe deviation. This deviation is attributed to the dendrtic coarsening and the inhomogeneity of interdendritic liquid concentration caused by various interface curvatures. Under the condition of moderate back diffusion, it is found that the effect of dendritic morphology on microsegregation can be accounted by enhancing the Fourier number which characterizes the solid-state diffusion. However, this effect decreases with enhancing the back diffusion of the system.
机译:通过执行二维相场模拟分析柱状树突状阵列内的微偏析。在各种反向扩散条件下,研究了微观结构形态对微观偏析的影响。在没有反向扩散的条件下,发现对于没有第二枝晶臂的区域,仿真结果与Scheil方程吻合得很好,但是对于具有良好第二枝晶臂的区域,存在严重的偏差。该偏差归因于由各种界面曲率引起的枝晶粗化和枝晶间液体浓度的不均匀性。发现在适度的向后扩散条件下,树突形态对微偏析的影响可以通过提高表征固态扩散的傅里叶数来解决。但是,随着增强系统的向后扩散,该效果会降低。

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