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Plastic deformation of a composite and the source-shortening effect simulated by a continuum dislocation-based model

机译:复合材料的塑性变形和基于连续位错的模型模拟的源缩短效应

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摘要

A two-dimensional implementation of a continuum dislocation-based model is presented. This model describes the evolution of dislocation fields during plastic deformation. Since it accounts for the self-force of the curved dislocations carrying the plastic deformation, it is length-scale dependent. The model is embedded in a standard plane strain continuum crystal plasticity framework which is numerically implemented by the finite element method. As a test problem, the simple shearing of a constrained crystalline strip is considered. Then, the response of a representative cell of a two-dimensional composite structure to shear load is simulated. It is shown that the model is able to reproduce the source-shortening effect that is observed in deformed composite materials.
机译:提出了基于连续位错模型的二维实现。该模型描述了塑性变形过程中位错场的演变。因为它考虑了携带塑性变形的弯曲位错的自力,所以它取决于长度比例。该模型被嵌入到标准平面应变连续体晶体可塑性框架中,该框架通过有限元方法实现。作为测试问题,考虑了对受约束的结晶条的简单剪切。然后,模拟了二维复合结构的典型单元对剪切载荷的响应。结果表明,该模型能够再现变形复合材料中观察到的源极缩短效应。

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