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Influence of twinning deformation and lattice rotation on strength differential effect in polycrystalline pure magnesium with rolling texture

机译:孪晶变形和晶格旋转对具有滚动织构的多晶纯镁强度微分效应的影响

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摘要

The microstructural mechanism of the strength differential (SD) effect in polycrystalline pure magnesium with rolling texture is numerically investigated by rate-dependent crystal plasticity finite element analysis. The present analysis method considers basal slip, prismatic slip, first-order pyramidal slip, and second- order pyramidal slip, as well as deformation twinning due to c-axis tension. Critical resolved shear stresses (CRSS) of single crystal pure magnesium reported in the literatures are used for the material parameters in the analysis. The SD effect in a numerically generated material, which has a strong texture typical of rolled magnesium, is examined by simulating tensile and compressive tests. The results show a significant SD effect due to deformation twinning. The results of simulations that do not take deformation twinning into account, however, still show a non-negligible SD effect. This persistent SD effect, which has no relation to the twinning, is explained in terms of lattice rotation and different CRSS on different slip systems.
机译:通过速率依赖性晶体塑性有限元分析,数值研究了具有滚动织构的多晶纯镁中强度差(SD)效应的微观结构机理。本分析方法考虑了基底滑移,棱柱滑移,一阶金字塔滑移和二阶金字塔滑移,以及由于c轴张力引起的变形孪生。文献中报道的单晶纯镁的临界分辨剪切应力(CRSS)用于分析中的材料参数。通过模拟拉伸试验和压缩试验,可以检查数字生成材料的SD效果,该材料具有轧制镁特有的典型质感。结果表明,由于变形孪生,SD效果显着。但是,未考虑变形孪生的模拟结果仍然显示出不可忽略的SD效应。这种持久的SD效应与孪生无关,它是根据晶格旋转和不同滑移系统上不同的CRSS来解释的。

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