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Analysis for twinning and slip in face-centered cubic crystals under axisymmetric co-deformation

机译:轴对称共变形下面心立方晶体的孪晶和滑移分析

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The maximum work principle of Bishop-Hill was developed to analyze the axisymmetric co-deformation in face-centered cubic crystals (f.c.c.) for twinning on {111}(112) and slip on {111}(110) systems. The influence of zeta , the ratio of critical resolved shear stress for twinning to slip, on the yield stress states and corresponding active slip or/and twinning systems for orientations in the standard stereographic triangle of cubic crystal was investigated systematically. The Taylor factors and the anisotropy of yield strength for three important orientations [100], [110] and [111] in orientation space were analyzed. It is found that the yield strength asymmetry for the case of axisymmetric deformation of tension and compression can be explained based on the microscopic theory of crystal plasticity. The concept of orientation factor for twinning ability was proposed and the deformation mechanism map in the orientation space was established for the case of axisymmetric deformation. The deformation texture formation and development of f.c.c. crystals with low stacking fault energy for axisymmetric tension can be explained qualitatively on the basis of analyzed results.
机译:开发了Bishop-Hill的最大工作原理来分析面心立方晶体(f.c.c.)中的轴对称共变形,以便在{111}(112)上孪晶并在{111}(110)系统上打滑。系统地研究了zeta,孪晶与滑移的临界分辨剪切应力之比对屈服应力状态以及相应的有效滑移或孪晶系统的取向的影响,该系统在立方晶体的标准立体三角形中定向。分析了取向空间中三个重要取向[100],[110]和[111]的泰勒因子和屈服强度的各向异性。发现可以基于晶体可塑性的微观理论来解释拉伸和压缩的轴对称变形情况下的屈服强度不对称性。提出了孪生能力取向因子的概念,并针对轴对称形变建立了取向空间中的形变机理图。 f.c.c.的变形纹理的形成和发展在分析结果的基础上,可以定性地解释具有低堆垛层错能量的轴对称拉伸晶体。

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