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On twinning and anisotropy in rolled Mg alloy AZ31 under uniaxial tension

机译:单轴拉伸镁合金AZ31的孪生和各向异性

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The Elastic Visco-Plastic Self-Consistent (EVPSC) model, with the recently developed Twinning and De-Twinning (TDT) description, is applied to study the mechanical behaviour of hot-rolled Mg alloy AZ31 under uniaxial tension. Numerical results are compared to the experimental uniaxial tensile tests reported earlier by Chapuis et al. [29] for the out-of-plane directions of a thick plate along angles of α = 0°, 30°, 45°, 60° and 90° between the normal direction and longitudinal specimen axis. It is shown that accounting for the initial texture and calibrating the EVPSC-TDT model by using uniaxial tension tests along the rolling direction and normal direction permits prediction of the strength anisotropy and strain hardening behavior along all five tensile directions, i.e. for cases in which the contribution of twinning is dominating, negligible or intermediate.
机译:弹性粘弹自洽(EVPSC)模型具有最近开发的孪生和解孪生(TDT)描述,可用于研究热轧Mg合金AZ31在单轴拉伸下的力学行为。将数值结果与Chapuis等人先前报道的实验单轴拉伸试验进行了比较。 [29]对于厚板的平面外方向,沿着法线方向与纵向样本轴之间的角度α= 0°,30°,45°,60°和90°。结果表明,考虑初始织构并通过使用沿轧制方向和法线方向的单轴拉伸测试来校准EVPSC-TDT模型,可以预测沿所有五个拉伸方向的强度各向异性和应变硬化行为,即孪生的贡献是主要的,可忽略的或中间的。

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