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An alternative treatment of phenomenological higher-order strain-gradient plasticity theory

机译:现象学高阶应变梯度可塑性理论的另一种处理方法

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Phenomenological higher-order strain-gradient plasticity is here presented through a formulation inspired by previous work for strain-gradient crystal plasticity. A physical interpretation of the phenomenological yield condition that involves an effect of second gradient of the equivalent plastic strain is discussed, applying a dislocation theory-based consideration. Then, a differential equation for the equivalent plastic strain-gradient is introduced as an additional governing equation. Its weak form makes it possible to deduce and impose extra boundary conditions for the equivalent plastic strain. A connection between the present treatment and strain-gradient theories based on an extended virtual work principle is discussed. Furthermore, a numerical implementation and analysis of constrained simple shear of a thin strip are presented.
机译:现象学的高阶应变梯度可塑性在这里是通过受先前关于应变梯度晶体可塑性的研究启发而得出的。应用基于位错理论的考虑,讨论了涉及等效塑性应变的第二梯度影响的现象学屈服条件的物理解释。然后,引入等效塑性应变梯度的微分方程作为附加控制方程。它的弱形式使得有可能推导和施加等效塑性应变的额外边界条件。讨论了基于扩展虚拟工作原理的当前处理和应变梯度理论之间的联系。此外,还给出了薄带约束简单剪切的数值实现和分析。

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