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首页> 外文期刊>International Journal of Plasticity >Predicting textural variability effects in the anisotropic plasticity and stability of hexagonal metals: Application to magnesium and its alloys
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Predicting textural variability effects in the anisotropic plasticity and stability of hexagonal metals: Application to magnesium and its alloys

机译:预测六边形金属各向异性可塑性和稳定性的纹理可变性效应:镁及其合金的应用

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摘要

This work systematically investigates the texture-property linkages in hexagonal close-packed (hexagonal) materials using a three-dimensional computational crystal plasticity approach. Magnesium and its alloys are considered as a model system. We perform full-field, large-strain, micromechanical simulations using a wide range of surrogate textures that sample several experimental datasets for a range of Mg alloys. The role of textural variability and the associated sensitivity of deformation mechanisms on the evolution of macroscopic plastic anisotropy and strength asymmetry is mapped under uniaxial tensile and compressive loading along the material principal and off-axes orientations. To assess the role of crystallographic plastic anisotropy, two distinct material datasets are simulated, which represent pure and alloyed magnesium. The results provide insights into experimental observations reported for magnesium alloys over a range of material textures. We further discuss potential implications on the damage tolerance from the aggregate plastic anisotropy arising from intrinsic crystallographic and textural effects.
机译:这项工作系统地使用三维计算晶体塑性方法来系统地研究六边形封闭式(六边形)材料中的质地 - 性质键。镁及其合金被认为是模型系统。我们使用各种代理纹理进行全场,大应变,微机械模拟,该纹理在一系列MG合金中采样几个实验数据集。纹理可变性的作用和变形机制相关敏感性对宏观塑料各向异性和强度不对称的演变的作用在单轴拉伸和沿材料主体和轴向方向上的压缩载荷下映射。为了评估晶体塑性各向异性的作用,模拟了两个不同的材料数据集,其代表纯净且合金化的镁。结果提供了对镁合金在一系列材料纹理上报道的实验观察的见解。我们进一步讨论了对来自内在晶体和纹理效应产生的聚集塑性各向异性损伤耐受性的潜在影响。

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