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A phase-field simulation study of irregular grain boundary migration during recrystallization

机译:再结晶过程中不规则晶界迁移的相场模拟研究

摘要

We present simulation results based on a phase-field model that describes the migration of recrystallization boundaries into spatially varying deformation energy fields. Energy fields with 2-dimensional variations representing 2 sets of dislocation boundaries lying at equal, but opposite, angles to the moving boundary are considered. The simulations show that the shape and overall migration rate of the recrystallization front is considerably affected by spatial variations in the deformation microstructure. It is seen that, depending on characteristics of the variations in the deformation microstructure, highly asymmetrical protrusions and retrusions can develop on the migrating recrystallization front resulting in a migration velocity considerably larger than that expected from standard recrystallization models. It is also seen that, when the wavelength of the variations in a deformation microstructure along the grain boundary is larger than the wavelength of the variations in the direction of migration, parts of the boundary show a stop-and-go type of migration, resulting in a lower overall migration rate. These simulations thus reproduce and explain many of the typical features observed in recrystallization experiments. They give new insights in the way deformation microstructures can affect the migration behavior of recrystallization boundaries and can lead to a stop-and-go type of migration of the recrystallization boundary even in pure materials.
机译:我们提供基于相场模型的仿真结果,该模型描述了再结晶边界向空间变化的形变能场的迁移。考虑具有二维变化的能量场,该二维变化表示两组位错边界与运动边界的角度相等,但方向相反。模拟表明,再结晶前沿的形状和整体迁移速率受变形微观结构空间变化的影响很大。可以看出,根据形变微观结构变化的特性,在迁移的再结晶前沿上会出现高度不对称的突起和凹陷,从而导致迁移速度大大高于标准再结晶模型的预期速度。还可以看到,当沿着晶粒边界的变形微观结构中的变化的波长大于迁移方向上的变化的波长时,边界的一部分显示出走走停停的迁移类型,结果总体迁移率较低。因此,这些模拟重现并解释了重结晶实验中观察到的许多典型特征。他们提供了新的见解,说明变形微结构可以影响再结晶边界的迁移行为,甚至在纯净材料中也可以导致再结晶边界的停停式迁移。

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