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Modeling the thermoelastic-viscoplastic response of polycrystals using a continuum representation over the orientation space

机译:使用取向空间上的连续表示来模拟多晶的热弹-粘塑性响应

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摘要

Conventional methodologies towards polycrystal plasticity use an aggregate of single crystals and this choice of the aggregate affects the response of the polycrystal. In order to address this issue, a continuum approach is presented for the representation of polycrystals through an orientation distribution function over the orientation space. Additionally, a constitutive framework for thermoelastic-viscoplastic response of metals based on polycrystal plasticity is presented along with a coupled macro-micro, fully implicit Lagrangian finite element algorithm. Numerical examples that highlight the accuracy, performance and benefits of the proposed. approach are presented. (C) 2004 Elsevier Ltd. All rights reserved.
机译:用于多晶可塑性的常规方法使用单晶的聚集体,并且聚集体的这种选择影响多晶的响应。为了解决这个问题,提出了一种通过取向空间上的取向分布函数表示多晶的连续方法。此外,还提出了基于多晶可塑性的金属热弹-粘塑性响应的本构框架,以及耦合的宏观-微观,完全隐式拉格朗日有限元算法。数值示例突出了所提出的准确性,性能和好处。方法。 (C)2004 Elsevier Ltd.保留所有权利。

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