首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Multi-scale modeling and experimental study of twin inception and propagation in hexagonal close-packed materials using a crystal plasticity finite element approach-Part Ⅰ: Average behavior
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Multi-scale modeling and experimental study of twin inception and propagation in hexagonal close-packed materials using a crystal plasticity finite element approach-Part Ⅰ: Average behavior

机译:六方密堆积材料中双晶初生和扩展的多尺度建模和实验研究,采用晶体塑性有限元方法-第一部分:平均行为

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A Crystal Plasticity Finite Element (CPFE) code is used to study the effect of grain boundary geometry and texture on twin inception and propagation. Three dimensional grains with random shapes are generated using Voronoi tessellation and used for simulations. The results are compared with previously published Electron Backscattered Diffraction (EBSD) studies carried out on zirconium and magnesium. It is shown here that the majority of phenomena observed experimentally regarding the average (statistical) behavior of twins can be captured by considering the grain boundary geometry. It is observed that twins are prone to initiate at grain boundaries and specifically at the conjunction of more than two grains. The various stress conditions and concentrations at grain boundaries also result in selection of different twin variants.
机译:晶体可塑性有限元(CPFE)代码用于研究晶界几何形状和织构对孪生开始和扩展的影响。使用Voronoi细分生成具有随机形状的三维晶粒,并将其用于仿真。将该结果与先前发表的对锆和镁进行的电子背散射衍射(EBSD)研究进行了比较。在此表明,通过观察晶界的几何形状可以捕获关于双晶的平均(统计)行为的实验观察到的大多数现象。观察到孪晶倾向于在晶界处开始,特别是在两个以上晶粒的结合处。晶界处的各种应力条件和浓度也导致选择不同的孪生变体。

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