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首页> 外文期刊>International Journal of Plasticity >On stress-state dependent plasticity modeling: Significance of the hydrostatic stress, the third invariant of stress deviator and the non-associated flow rule
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On stress-state dependent plasticity modeling: Significance of the hydrostatic stress, the third invariant of stress deviator and the non-associated flow rule

机译:关于依赖于应力状态的可塑性模型:静水压力,应力偏差的第三不变性和非关联流规则的意义

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摘要

It has been shown that the plastic response of many materials, including some metallic alloys, depends on the stress state. In this paper, we describe a plasticity model for isotropic materials, which is a function of the hydrostatic stress as well as the second and third invariants of the stress deviator, and present its finite element implementation, including integration of the constitutive equations using the backward Euler method and formulation of the consistent tangent moduli. Special attention is paid for the adoption of the non-associated flow rule. As an application, this model is calibrated and verified for a 5083 aluminum alloy. Furthermore, the Gurson-Tvergaard-Needleman porous plasticity model, which is widely used to simulate the void growth process of ductile fracture, is extended to include the effects of hydrostatic stress and the third invariant of stress deviator on the matrix material.
机译:已经表明,许多材料(包括某些金属合金)的塑性响应取决于应力状态。在本文中,我们描述了各向同性材料的塑性模型,该模型是静水压力以及应力偏向器的第二和第三不变量的函数,并提出了其有限元实现,包括使用向后的本构方程进行积分欧拉方法和一致切线模量的公式。要特别注意采用非关联流规则。作为一种应用,该模型针对5083铝合金进行了校准和验证。此外,Gurson-Tvergaard-Needleman多孔可塑性模型被广泛用于模拟延性断裂的空隙生长过程,并扩展到包括静水应力和应力偏差的第三不变性对基体材料的影响。

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