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Modeling length scale effects on strain induced grain boundary migration via bridging phase field and crystal plasticity methods

机译:通过桥接相场和晶体塑性方法对应变诱导晶界迁移的建模长度效应

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摘要

A coupled crystal plasticity and phase field modeling framework is employed to simulate polycrystalline grain growth via static strain induced grain boundary migration. Specifically, the effect of the average grain size as a microstructural length scale on the development of microstructure and texture in columnar-grained aluminum polycrystal is examined. During annealing, subsequent to plastic tensile straining, a nearly normal grain growth regime is observed for comparatively small microstructural length scales. However, for comparatively large microstructural length scales, abnormal grain growth and development of a specific texture emerge. Hence, grain growth is found to transition from normal to abnormal by enlarging the microstructural length scale. These observations are attributed to the fact that the competing driving forces for grain boundary migration scale differently with the microstructural length scale. In addition, for the case of large microstructural length scale, a transition from abnormal to normal grain growth at later annealing times is observed. This observation is attributed to the weakening of the strain induced boundary migration effects due to the initial rapid reduction of dislocation content. (C) 2019 Published by Elsevier Ltd.
机译:使用耦合晶体塑性和相位场建模框架来通过静态应变诱导的晶界迁移模拟多晶粒生长。具体地,研究了平均晶粒尺寸作为微观结构长度规模的效果,对柱状颗粒多晶多晶体中的微观结构和质地的发展。在退火期间,在塑料拉紧之后,观察到几乎正常的微观结构长度尺度。然而,对于相对较大的微观结构长度尺度,特定纹理的异常晶粒生长和发育出现。因此,发现晶粒生长通过扩大微观结构长度尺度来从正常转变为异常。这些观察结果归因于谷物边界迁移的竞争驱动力与微观结构长度尺度不同。另外,对于大型微观结构长度尺度的情况,观察到从后续退火时间异常到正常晶粒生长的转变。由于偏移含量的初始快速降低,这种观察归因于应变诱导的边界迁移效应的弱化。 (c)2019年由elestvier有限公司出版

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