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首页> 外文期刊>International Journal for Numerical Methods in Engineering >A new finite element integration scheme. Application to a simple shear test of anisotropic material
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A new finite element integration scheme. Application to a simple shear test of anisotropic material

机译:一种新的有限元集成方案。在各向异性材料的简单剪切试验中的应用

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摘要

Finite element simulations involving large strains and large displacements imply the setting up of a precise kinematics for the integration scheme. Moreover, anisotropic mechanical behaviours have to be expressed in an appropriate local reference frame. In the present paper, a computational procedure is derived from a particular velocity gradient definition. Its implementation in a finite element code is described. Application to a simple shear test is proposed. For anisotropic materials, a sinusoidal behaviour of the shear stress component is emphasized. This is due to the anisotropic yield locus and appears in the case of a saturated isotropic hardening law. Copyright (c) 2007 John Wiley & Sons, Ltd.
机译:涉及大应变和大位移的有限元模拟意味着为集成方案建立了精确的运动学。而且,各向异性力学行为必须在适当的局部参考系中表达。在本文中,计算过程是从特定的速度梯度定义得出的。描述了其在有限元代码中的实现。提出了在简单剪切试验中的应用。对于各向异性材料,应强调剪切应力分量的正弦特性。这是由于各向异性屈服轨迹所致,并且在饱和各向同性硬化定律的情况下出现。版权所有(c)2007 John Wiley&Sons,Ltd.

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