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Phase field modeling of grain boundary migration with solute drag

机译:溶质拖曳下晶界运移的相场建模

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摘要

The grain boundary (GB) motion in the presence of GB segregation is investigated by means of phase field simulations. It is found that the solute concentration at the moving GB may increase with increasing velocity and becomes larger than the equilibrium value, which is unexpected according to the solute drag theory proposed by Calm, but has been observed in some experiments. A non-linear relation between the driving force (curvature) and the GB velocity is found in two cases: (1) the GB motion undergoes a transition from the low-velocity extreme to the high-velocity extreme; (2) the GB migrates slowly in a strongly segregating system. The first case is consistent with the solute drag theory of Cahn. As for the second case, which is unexpected according to solute drag theory, the non-linear relation between the GB velocity and curvature comes from two sources: the non-linear relation of the solute drag force with GB velocity, and the variation in GB energy with curvature. It is also found that, when the diffusivity is spatially inhomogeneous, the kinetics of GB motion is different from that with a constant diffusivity.
机译:通过相场模拟研究了存在GB偏析的晶界(GB)运动。研究发现,运动GB处的溶质浓度可能随着速度的增加而增加,并变得大于平衡值,这在Calm提出的溶质阻力理论中是出乎意料的,但在一些实验中已经观察到。驱动力(曲率)与GB速度之间存在非线性关系,有两种情况:(1)GB运动经历了从低速极值到高速极值的转变;(2) GB 在强隔离系统中迁移缓慢。第一种情况与卡恩的溶质阻力理论是一致的。至于第二种情况,根据溶质阻力理论是出乎意料的,GB速度和曲率之间的非线性关系来自两个来源:溶质阻力与GB速度的非线性关系,以及GB能量随曲率的变化。研究还发现,当扩散率在空间上不均匀时,GB运动的动力学与扩散率恒定时的动力学不同。

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