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首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >Advantages of formulating an evolution equation directly for elastic distortional deformation in finite deformation plasticity
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Advantages of formulating an evolution equation directly for elastic distortional deformation in finite deformation plasticity

机译:在有限变形可塑性中直接制定进化方程的优点,用于有限变形可塑性的弹性扭曲变形

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摘要

Simo (Comput Methods Appl Mech Eng 66:199-219, 1988) proposed an evolution equation for elastic deformation together with a constitutive equation for inelastic deformation rate in plasticity. The numerical algorithm (Simo in Comput Methods Appl Mech Eng 68: 1-31,1988) for determining elastic distortional deformation was simple. However, the proposed inelastic deformation rate caused plastic compaction. The corrected formulation (Simo in Comput Methods Appl Mech Eng 99: 61-112, 1992) preserves isochoric plasticity but the numerical integration algorithm is complicated and needs special methods for calculation of the exponential map of a tensor. Alternatively, an evolution equation for elastic distortional deformation can be proposed directly with a simplified constitutive equation for inelastic distortional deformation rate. This has the advantage that the physics of inelastic distortional deformation is separated from that of dilatation. The example of finite deformation J(2) plasticity with linear isotropic hardening is used to demonstrate the simplicity of the numerical algorithm.
机译:SIMO(计算方法APPL MECH ENG 66:199-219,1988)提出了一种弹性变形的演化方程,其具有可塑性的非弹性变形率的组成方程。用于确定弹性扭曲变形的数值算法(Simo In Appl MECH ENG 68:1-31,1988)简单。然而,所提出的非弹性变形率引起塑料压实。纠正的制剂(Simo在计算方法中的Simo Appl MECH ENG 99:61-112,1992)保留了同义因子可塑性,但数值集成算法复杂,需要特殊方法来计算张量的指数贴图。或者,可以直接用简化的结构扭曲变形速率提出弹性变形变形的演化方程。这具有以下优点:无弹性变形变形的物理与扩张的物理分离。具有线性各向同性硬化的有限变形J(2)可塑性的实施例用于证明数值算法的简单性。

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