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首页> 外文期刊>International Journal of Plasticity >A thermodynamically consistent framework to derive local/nonlocal generalized nonassociative plasticity/viscoplasticity theories
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A thermodynamically consistent framework to derive local/nonlocal generalized nonassociative plasticity/viscoplasticity theories

机译:热力学上一致的框架,用于导出局部/非本体广义非分子性塑性/粘塑性理论

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摘要

We present a rigorous and consistent thermodynamic-based approach to derive generalized nonassociative rate-independent and rate-dependent plasticity theories. It is demonstrated that the nonassociative plasticity theories are a straightforward consequence of the principle of virtual power. Besides, the relationship between the plastic potential function and yield function is established on the basis of the principle of virtual power. All thermodynamic conjugate forces are decomposed into two parts referred to as the energetic and dissipative components. The energetic part is derived from the Helmholtz free energy while the dissipative component is derived from the rate of the dissipated energy by postulating the principle of maximum dissipation. It is also shown that the nonlocality energy residual, arising from plastic strain gradients, has two components: namely, the energetic nonlocality energy residual, which is stored at the interfaces; and the dissipative nonlocality energy residual, which is dissipated through the interfaces. Finally, several examples are provided focusing on the derivation of associative/nonassociative local/nonlocal plasticity and viscoplasticity models based on the presented thermodynamic framework.
机译:我们提出了一种严格和一致的基于热力学的方法来推导出广义非分子化率无关和依赖速率依赖性塑性理论。结果表明,非分配可塑性理论是虚拟电力原理的直接后果。此外,基于虚拟电力原理建立塑料电位功能和产量函数之间的关系。所有热力学缀合物力都分解为称为能量和耗散成分的两部分。能量部分来自亥姆霍兹自由能源,而耗散组分通过假设最大耗散原理来源于耗散能量的速率。还表明,由塑料应变梯度引起的非划分能量残差具有两个组分:即,充满活力的非划分能量残差,其存储在界面处;和通过界面消散的耗散非划分能量残余。最后,提供了几种实施例,其专注于基于所提出的热力学框架的缔合/非分子局部/非局部塑性和粘盖性模型的推导。

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