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Microstructural and Numerical Investigation on the Shear Response of a Rare-Earth Magnesium Alloy Sheet

机译:稀土镁合金薄板剪切响应的组织与数值研究

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Shear tests were performed on an anisotropic rare-earth magnesium alloy rolled sheet (ZEK100-O) to study the constitutive plastic behaviour of the material under quasi-static conditions at room temperature. The shear response was characterized in three orientations by setting the shear loading direction at 45°, 90°, and 135° with respect to the rolling direction. Each orientation displayed unique trends in terms of yielding and the work hardening rates. Electron Backscattered Dim-action (EBSD) analysis was used to analyze the microstructure of the deformed samples and to determine the twinning modes and twin fraction in each specimen. The results suggest that these parameters have a significant impact on the constitutive behavior of the material. Furthermore, the viscoplastic self-consistent twinning-detwinning (VPSC-TDT) model was used to understand the activity of the various deformation mechanisms and validate the experimental observations.
机译:在各向异性稀土镁合金压延板(ZEK100-O)上进行了剪切测试,以研究该材料在室温下准静态条件下的本构塑性行为。通过将剪切载荷方向相对于轧制方向设置为45°,90°和135°,可以在三个方向上表征剪切响应。每个方向都显示出在屈服和工作硬化率方面的独特趋势。使用电子背散射暗作用(EBSD)分析来分析变形样品的微观结构,并确定每个样品中的孪生模式和孪生分数。结果表明,这些参数对材料的本构行为有重要影响。此外,使用粘塑性自洽孪生孪生双胞胎(VPSC-TDT)模型来了解各种变形机制的活性并验证实验结果。

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