首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >Hard-sphere displacive model of deformation twinning in hexagonal close-packed metals. Revisiting the case of the (56 degrees, a) contraction twins in magnesium
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Hard-sphere displacive model of deformation twinning in hexagonal close-packed metals. Revisiting the case of the (56 degrees, a) contraction twins in magnesium

机译:六角形紧密金属变形孪生变形的硬球移位模型。 重新审视镁中的(56度,a)收缩双胞胎的情况

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Contraction twinning in magnesium alloys leads to new grains that are misoriented from the parent grain by a rotation (56 degrees, a). The classical shear theory of deformation twinning does not specify the atomic displacements and does not explain why contraction twinning is less frequent than extension twinning. The paper proposes a new displacive model in line with our previous work on martensitic transformations and extension twinning. A continuous angular distortion matrix that transforms the initial hexagonal close-packed (h.c.p.) crystal into a final h.c.p. crystal is determined such that the atoms move as hard spheres and reach the final positions expected by the orientation relationship. The calculations prove that the distortion is not a simple shear when it is considered in its continuity. The (0 (1) over bar1) plane is untilted and restored, but it is not fully invariant because some interatomic distances in this plane evolve during the distortion process; the unit volume also increases up to 5% before coming back to its initial value when the twinning distortion is complete. Then, the distortion takes the form of a simple shear on the (0 (1) over bar1) plane with a shear along the direction [18;(5) over bar;(5) over bar] of amplitude 0.358. Experiments are proposed to validate or disprove the model.
机译:在镁合金中的收缩孪生导致新的晶粒通过旋转(56度,a)从母晶中误导。变形孪生的古典剪切理论不指定原子位移,并且不解释为什么收缩孪生比延伸孪晶较少。本文提出了一种新的流离失所模式,符合我们以前的马氏体转换和延长孪生的工作。连续的角度失真矩阵,其将初始六边形紧密包装(H.C.P.)晶体变换成最终的H.C.P.确定晶体使得原子移动为硬球,并通过方向关系达到预期的最终位置。当在其连续性中考虑时,计算证明失真不是一个简单的剪切。 (0(1)over Bar1)平面是直接和恢复的,但是它不是完全不变的,因为该平面中的某些内部距离在变形过程中发展;当孪晶失真完成时,单位体积也增加了最多5%之前增加到5%。然后,使变形是在沿方向的剪切(0(1)上)平面上的简单剪切的形式[18;(5)上方的凸形;(5)幅度为0.358。建议实验验证或反驳该模型。

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