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On the deformation twinning of Mg AZ31B:A three-dimensional synchrotron X-ray diffraction experiment and crystal plasticity finite element model

机译:关于mg aZ31B的变形孪晶:三维同步辐射X射线衍射实验和晶体塑性有限元模型

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摘要

Crystals with a hexagonal close-packed (HCP) structure are inherently anisotropic, and have a limited number of independent slip systems, which leads to strong deformation textures and reduced formability in polycrystalline products. Tension along the c-axis of the crystal ideally activates extension twinning as a deformation mode due to the lack of easy-slip systems. In this work, experiments were devised to study extension twinning in a polycrystalline Mg alloy AZ31B with a strong basal rolling texture by tensile deformation parallel to the plate normal. Three-dimensional synchrotron X-ray diffraction (3DXRD) was used to map the center-of-mass positions, volumes, orientations, elastic strains, and stress tensors of over 1400 grains in-situ up to a true strain of 1.4%. More than 700 tensile twins were observed to form in the mapped volume under deformation. The measured center-of-mass positions and grain volumes are used to construct various 3D microstructures and model them with a Crystal Plasticity Finite Element (CPFE) code. It is observed that the average grain-resolved stress did not always select the highest ranked Schmid factor twin variant. In fact, the contribution of lower ranked variants was non-negligible. The CPFE simulation indicates that there is a small variation in the stress within each grain in the elastic regime, which increases drastically upon the onset of plasticity. One of the significant outcomes of this work is the new statistical information on the interaction between twin and parent grain. It is shown that, on average, there is a small difference between the stress normal to the twin habit plane in the parent and twin, but that this is not the case for the shear acting on the habit plane.
机译:具有六方密堆积(HCP)结构的晶体具有固有的各向异性,并且具有有限数量的独立滑移系统,这会导致强烈的变形纹理并降低多晶产品的可成形性。由于缺乏易滑系统,沿晶体c轴的张力理想地将延伸孪晶激活为变形模式。在这项工作中,设计了一些实验来研究通过平行于板法线的拉伸变形在具有强基轧制织构的多晶镁合金AZ31B中进行延伸孪晶。使用三维同步加速器X射线衍射(3DXRD)绘制了1400多个晶粒的质量中心位置,体积,方向,弹性应变和应力张量的图,真实应变高达1.4%。观察到变形后在映射体积中形成了700多个拉伸孪晶。所测量的质心位置和晶粒体积用于构造各种3D微结构,并使用晶体塑性有限元(CPFE)代码对其进行建模。观察到,平均晶粒分辨应力并不总是选择最高等级的施密特因子孪生变体。实际上,排名较低的变体的贡献是不可忽略的。 CPFE模拟表明,在弹性状态下,每个晶粒内的应力都有很小的变化,当塑性开始时,应力会急剧增加。这项工作的重要成果之一是关于双胞胎和母粒之间相互作用的新统计信息。结果表明,平均而言,垂直于双胎习性平面的应力在母体和双胎中有很小的差异,但是对于作用在习性平面上的剪切却不是这种情况。

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