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Phase-Field Modeling and Simulation of Nucleation and Growth of Recrystallized Grains

机译:结晶谷物成核和生长的相场建模及模拟

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The novel coupling recrystallization model is proposed in this study. First, the deformation microstructure was simulated by the finite element method based on the strain gradient crystal plasticity theory. The calculated dislocation density and crystal orientation were transferred to the recrystallization phase-field simulation. The initial subgrain structures used in phase-field simulation were determined by a relationship between dislocation density and subgrain size with the dislocation density distribution calculated by crystal plasticity simulation. The so-called KWC phase-field model, which can introduce both subgrain rotation and grain boundary migration, was employed, and spontaneous nucleation and grain growth were simulated simultaneously.
机译:本研究提出了新的偶联再结晶模型。首先,通过基于应变梯度晶体塑性理论的有限元法模拟变形微观结构。将计算的位错密度和晶体取向转移到再结晶相场模拟中。相位场模拟中使用的初始粒子结构由位错密度和子粒尺寸之间的关系确定通过晶体塑性模拟计算的位错密度分布。可以使用所谓的kWc相场模型,其可以引入阶层旋转和晶界迁移,并同时模拟自发成核和晶粒生长。

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