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首页> 外文期刊>International Journal of Plasticity >Prediction of deformation twinning statistics in zirconium using the Taylor, ALAMEL and binary tree models and a classical twinning criterion
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Prediction of deformation twinning statistics in zirconium using the Taylor, ALAMEL and binary tree models and a classical twinning criterion

机译:使用泰勒,阿拉胺和二叉树模型和经典孪晶标准预测锆的变形统计统计数据

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The classical Chin-Hosford-Mendorf (CHM) criterion for deformation twinning is used widely in polycrystal plasticity computer simulations. It assumes that twin nuclei are abundant, and that twin propagation and growth control the realisation of deformation twins. However, recent experimental studies reported in the literature have found that nominally unfavourable twin systems are activated in grains. This has been attributed to twin nucleation in some of the unfavourable twinning systems with low Schmid factors, and its suppression in some of the nominally more favourable ones. Presently, this explanation is quantitatively examined. Full and relaxed constraint versions of the Taylor, ALAMEL, and binary tree based models, all implementing the CHM criterion are used to simulate uniaxial compression of a zirconium billet. Model predictions are compared with experimentally measured twinning statistics reported in the literature for a Zr polycrystal. The ALAMEL and binary tree models, which explicitly represent intergranular interactions, are found to capture the twinning statistics well. These observations suggest that the CHM criterion is adequate to capture twinning in Zr, provided intergranular interactions are represented in the model used to interpret the experiments. (C) 2017 Elsevier Ltd. All rights reserved.
机译:变形孪晶的古典下巴 - Hosford-Mendorf(CHM)标准广泛用于多晶塑性计算机模拟中。它假设双核丰富,双胞胎繁殖和生长控制变形双胞胎的实现。然而,文献中报告的最近的实验研究发现,名义不利的双胞胎系统在谷物中激活。这已归因于一些不利的双翼系统的双胞胎成核,其施密因素低,其抑制在一些名义更有利的系统中。目前,这种解释是定量检查的。所有实施CHM标准的泰勒,阿拉美尔和二叉树和二叉树和二叉树和二叉树和二叉树的型号的完整和放松约束版本用于模拟锆坯料的单轴压缩。将模型预测与在文献中报告的Zr多晶中报告的实验测量统计数据进行了比较。发现alamel和二进制树模型,明确代表晶间相互作用,井捕获孪生统计数据。这些观察结果表明CHM标准足以在Zr中捕获孪生,提供的晶间相互作用在用于解释实验的模型中表示。 (c)2017 Elsevier Ltd.保留所有权利。

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