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Explicit incorporation of deformation twins into crystal plasticity finite element models

机译:明确将变形双胞胎纳入晶体可塑性有限元模型

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Deformation twinning is a subgrain mechanism that strongly influences the mechanical response and microstructural evolution of metals especially those with low symmetry crystal structure. In this work, we present an approach to modeling the morphological and crystallographic reorientation associated with the formation and thickening of a twin lamella within a crystal plasticity finite element (CPFE) framework. The CPFE model is modified for the first time to include the shear transformation strain associated with deformation twinning. Using this model, we study the stress-strain fields and relative activities of the active deformation modes before and after the formation of a twin and during thickening within the twin, and in the parent grain close to the twin and away from the twin boundaries. These calculations are carried out in cast uranium (U), which has an orthorhombic crystal structure and twins predominantly on the {130} (3)over bar>10> systems under ambient conditions. The results show that the resolved shear stresses on a given twin system on the twin-parent grain interface and in the parent are highly inhomogeneous. We use the calculated mechanical fields to determine whether the twin evolution occurs via thickening of the existing twin lamella or formation of a second twin lamella. The analysis suggests that the driving force for thickening the existing twin lamella is low and that formation of multiple twin lamellae is energetically more favorable. The overall modeling framework and insight into why twins in U tend to be thin are described and discussed in this paper. (C) 2015 Elsevier B.V. All rights reserved.
机译:变形孪晶是一种细晶粒机制,会严重影响金属的机械响应和微观结构演变,尤其是那些具有低对称晶体结构的金属。在这项工作中,我们提出了一种方法,用于对与晶体可塑性有限元(CPFE)框架内双晶片的形成和增厚相关的形态和晶体学重新定向进行建模。首次修改了CPFE模型,以包括与变形孪生相关的剪切转变应变。使用该模型,我们研究了在孪晶形成前后,在孪晶内部以及在接近孪晶且远离孪晶边界的母晶粒中增稠期间的应力应变场和活动变形模式的相对活动。这些计算在具有正交晶结构且主要在环境条件下的{130} (3)over bar> 10>系统上孪生的铸造铀(U)中进行。结果表明,在给定的双晶系统上,双亲-晶粒界面上和母体中的解析剪切应力高度不均匀。我们使用计算出的机械场来确定孪晶演化是通过现有双晶层的增厚还是第二双晶层的形成而发生的。分析表明,使现有的双薄片增厚的驱动力很低,而形成多个双薄片在能量上更有利。本文描述并讨论了总体建模框架以及对为什么U中的双胞胎趋于瘦的见解。 (C)2015 Elsevier B.V.保留所有权利。

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