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Simulations of stress-induced twinning and de-twinning: A phase field model

机译:应力诱导的孪生和解孪的模拟:相场模型

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摘要

Twinning in certain metals or under certain conditions is a major plastic deformation mode. Here we present a phase field model to describe twin formation and evolution in a polycrystalline fcc metal under loading and unloading. The model assumes that twin nucleation, growth and de-twinning is a process of partial dislocation nucleation and slip on successive habit planes. Stacking fault energies, energy pathways (c surfaces), critical shear stresses for the formation of stacking faults and dislocation core energies are used to construct the thermodynamic model. The simulation results demonstrate that the model is able to predict the nucleation of twins and partial dislocations,as well as the morphology of the twin nuclei, and to reasonably describe twin growth and interaction. The twin microstructures at grain boundaries are in agreement with experimental observation. It was found that de-twinning occurs during unloading in the simulations,however, a strong dependence of twin structure evolution on loading history was observed.
机译:在某些金属或某些条件下的孪晶是一种主要的塑性变形模式。在这里,我们提出了一个相场模型来描述多晶fcc金属在加载和卸载下的孪晶形成和演化。该模型假设孪生成核、生长和去孪生是连续习性平面上部分位错成核和滑移的过程。利用堆叠断层能量、能量通路(c面)、形成堆叠断层的临界剪应力和位错核心能量构建了热力学模型。仿真结果表明,该模型能够预测孪生细胞的成核和部分位错,以及孪生细胞核的形态,并能合理地描述双胞胎的生长和相互作用。晶界处的孪晶微观结构与实验观察结果一致。结果表明,在卸载过程中存在脱孪现象,但孪生结构演化对加载历史具有很强的依赖性。

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