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Representative volume element calculations under constant stress triaxiality, Lode parameter, and shear ratio

机译:恒定应力三轴性,Lode参数和剪切比下的代表性体积元计算

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Recent experiments showed that the Lode parameter, which distinguishes between axisymmetric and shear dominated stress states, has a profound effect on material ductility, especially at low stress triaxiality (Bao and Wierzbicki, 2004; Barsoum and Faleskog, 2007a). Consequently, the theoretical framework for void growth and coalescence is currently being revisited, which often involves performing representative volume element (RVE) calculations. The present study investigates an RVE composed of a cubic unit cell containing a spherical void at its center. The void cell is subjected to a triaxial stress state with Sigma(11)/Sigma(22) = rho(11), Sigma(33)/Sigma(22) = rho(33), plus an additional shear stress component Sigma(12)/Sigma(22) = rho(12) In the coordinate axes aligned with the edges of the cubic void cell, x(i) (i = 1, 2,3), the non-dimensional stress ratios rho(11), rho(33), and rho(12) can be fully characterized by 3 parameters: the stress triaxiality, T, Lode parameter, L, and shear ratio, S. The aim of this paper is to provide an effective method to keep T, L, and S values constant in the entire course of the loading. The effectiveness of the proposed method is validated through several examples covering a wide range of T,L, and S values; the calculations are performed by using the general purpose finite element software ABAQUS. (C) 2014 Elsevier Ltd. All rights reserved.
机译:最近的实验表明,区分轴对称和剪切为主的应力状态的Lode参数对材料的延展性具有深远的影响,特别是在低应力三轴性下(Bao和Wierzbicki,2004; Barsoum和Faleskog,2007a)。因此,目前正在重新研究用于空隙生长和聚结的理论框架,这通常涉及执行代表性体积元素(RVE)计算。本研究研究了一个RVE,该RVE由一个立方体单元构成,该单元在其中心包含一个球形空隙。空隙单元处于三轴应力状态,其中Sigma(11)/ Sigma(22)= rho(11),Sigma(33)/ Sigma(22)= rho(33),加上额外的剪切应力分量Sigma(12) )/ Sigma(22)= rho(12)在与立方空隙单元的边缘对齐的坐标轴x(i)(i = 1,2,3)中,无量纲应力比rho(11), rho(33)和rho(12)可以通过3个参数来完全表征:应力三轴性T,洛德参数L和剪切比S。本文的目的是提供一种有效的方法来保持T, L和S值在整个加载过程中保持不变。通过涵盖多个T,L和S值的几个示例验证了该方法的有效性。通过使用通用有限元软件ABAQUS进行计算。 (C)2014 Elsevier Ltd.保留所有权利。

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