The movement of grain boundaries in pure metals and alloys with a low concentration of dislocations has been historically proved to follow curvature flow behavior. This mechanism is typically known as grain growth (GG). However, recent 3D in-situ experimental results tend to question this global picture concerning the influence of the curvature on the kinetics of interface migration. This article explains, thanks to 2D anisotropic full-field simulations, how the torque effects can complexify these discussions. It is then illustrated that neglecting torque effects in full-field formulations remains potentially a strong hypothesis. The apparent mobility can be much more complex than expected without necessarily questioning the influence of the curvature on the local kinetic equation.
翻译:纯金属和金属合金的谷物边界移动,其偏差浓度低,历来被证明遵循了曲流行为,这种机制通常被称为谷物生长(GG)。然而,最近的3D现场实验结果往往质疑关于曲线对界面迁移动因的影响的全球图景。这篇文章解释了由于2D 反向全场模拟,这些讨论如何会变得复杂。然后说明,忽视全场配方体的扭伤效应仍有可能是一个强有力的假设。表面上的流动性可能比预期的要复杂得多,而不必质疑曲线对当地动因方程式的影响。