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On the application of the additive decomposition of generalized strain measures in large strain plasticity

机译:广义应变测度加性分解在大应变可塑性中的应用

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In the present paper two thermodynamically consistent large strain plasticity models are examined and compared in finite simple shear. The first model (A) is based on the multiplicative decomposition of the deformation gradient, while the second one (B) on the additive decomposition of generalized strain measures. Both models are applied to a rigid-plastic material described by the von Mises-type yield criterion. Since both models include neither hardening nor softening law, a constant shear stress response even for large amounts of shear is expected. Indeed, the model A exhibits the true constant shear stress behavior independent of the elastic material law. In contrast, the model B leads to a spurious shear stress increase or drop such that its applicability under finite shear deformations may be questioned. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在本文中,研究了两个热力学一致的大应变可塑性模型,并在有限简单剪切中进行了比较。第一个模型(A)基于变形梯度的乘法分解,而第二个模型(B)基于广义应变量度的加法分解。两种模型都适用于由von Mises型屈服准则描述的硬质塑料材料。由于两个模型均未包含硬化和软化定律,因此即使对于大量剪切,也可以预期到恒定的剪切应力响应。实际上,模型A展现出与弹性材料定律无关的真正的恒定剪应力行为。相比之下,模型B导致虚假的剪应力增加或下降,因此可能会质疑其在有限剪变形下的适用性。 (C)2004 Elsevier Ltd.保留所有权利。

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