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Insight into a model for large strain anisotropic elasto-plasticity

机译:深入了解大应变各向异性弹塑性模型

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Efficient and accurate simulation of the deformations in anisotropic metallic sheets requires a constitutive model and an accompanying algorithm at large strains which take into account the anisotropy of both the elastic and plastic material behaviors, as well as their evolution with plastic strains. Recently we proposed such a constitutive model based on continuum energy considerations, the Lee decomposition and an anisotropic stored energy function of the logarithmic strains in which the rotation of the orthotropic axes is also considered. We obtained a framework similar to the one used in isotropic elasto-plasticity. In the present work we give some physical insight into the parameters of the model and their effects on the predictions, both in proportional and in non-proportional loading problems. We also present a procedure to obtain the spin parameter of the model from Lankford R-values.
机译:有效且准确地模拟各向异性金属板的变形,需要本构模型和伴随应变的大应变算法,其中要考虑弹性和塑性材料行为的各向异性以及塑性应变的演变。最近,我们提出了一种基于本构模型,该模型基于连续能量考虑,对数应变的Lee分解和各向异性储能函数,其中还考虑了正交各向异性轴的旋转。我们获得了一种类似于各向同性弹塑性的框架。在当前的工作中,我们对模型的参数及其对比例和非比例加载问题中的预测的影响提供了一些物理上的了解。我们还提出了一种从Lankford R值获得模型的自旋参数的过程。

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