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Multiscale plasticity: Reduction or emergence?

机译:多尺度可塑性:减少或出现?

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During the twentieth century, plasticity, as an example of inelastic deformation of materials, has grown to become a distinct field in solid mechanics. As a research topic it combines material science with mathematical modelling at a hierarchy of length scales, and encompasses dislocations as well as tensorial constitutive equations. Because of its predictive powers in engineering, plasticity models have become a standard ingredient of an engineer's toolbox, but do we really understand what it is? This article looks back at plasticity from a more philosophical point of view with the aim of unraveling the fabric of plasticity. Does the current hierarchy of theories provide a reductionist explanation? Or rather, does it have a multiscale structure that expresses the emergent phenomena that are contained within plasticity? The conclusion of these considerations turns out to be that the challenge is still ahead of us.
机译:在二十世纪,随着材料的非弹性变形的一个例子,已经生长为固体力学的鲜明场所。作为研究主题,它将材料科学与数学建模相结合,在长度尺度的层次结构中,并包括脱位以及姿态构成方程。由于其在工程中的预测力,可塑性模型已成为工程师工具箱的标准成分,但我们真的明白它是什么?本文回顾了一个更哲学的观点来恢复可塑性,目的是解开可塑性的织物。当前的理论层次是否提供了还原论述的解释?或者相反,它是否具有多尺度结构,表达了可塑性内容的紧急现象?这些考虑因素的结论事实证明,挑战仍在我们面前。

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