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首页> 外文期刊>International Journal for Numerical Methods in Engineering >On the numerical implementation of 3D rate-dependent single crystal plasticity formulations
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On the numerical implementation of 3D rate-dependent single crystal plasticity formulations

机译:关于3D速率相关的单晶可塑性配方的数值实现

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摘要

In this paper, several important numerical issues are addressed for three-dimensional (3D) rate-dependent single crystal plasticity. After a thorough comparison of different constitutive algorithms, we classify the integration methods into three approaches, namely, the implicit elastic/plastic deformation gradient approach, the implicit slip-rate approach. and the explicit slip-rate approach. As part of this algorithmic study, we focus on five different schemes to enforce the plastic incompressibility, four ways to update the texture, and one convergence criteria. The numerical performance of these different methods is illustrated. The contribution of this study is three-fold: a stable scheme for the incompressibility enforcement, an improved implicit algorithm, and a fully explicit algorithm. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:在本文中,解决了三维(3D)速率相关的单晶可塑性的几个重要数值问题。在对不同的本构算法进行彻底比较之后,我们将积分方法分为三种方法,即隐式弹性/塑性变形梯度方法,隐式滑移率方法。以及明确的滑移率方法。作为此算法研究的一部分,我们重点研究五种不同的方案来增强塑料的不可压缩性,四种更新纹理的方法以及一种收敛准则。说明了这些不同方法的数值性能。这项研究的贡献是三方面的:不可压缩实施的稳定方案,改进的隐式算法和完全显式算法。版权所有(c)2005 John Wiley&Sons,Ltd.

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