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Physically Based Kinematic Hardening Modelling of Single Crystal

机译:物理基于单晶的运动淬火建模

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This paper suggests a new method to take into account the kinematic hardening in constitutive behaviour of metallic face centred cubic single crystal. The keystone of this model is that kinematic effect arises from a description of the crystal dislocation microstructure based on a heterogeneous distribution of slip strength. In this paper, these concepts are applied to crystalline plasticity models. In particular, simulations of monotonous tensile test and cyclic loading are analysed to show that implementation of the proposed concepts, without any additional complexity, gives the current model a wide range of applications from small cycled strains to large monotonous ones.
机译:本文表明了一种新的方法,以考虑金属面中心立方单晶的本构体行为中的运动硬化。该模型的梯形石是基于滑动强度的异构分布的晶体位错微结构的描述出现了运动效果。在本文中,这些概念应用于晶体塑性模型。特别地,分析了单调拉伸试验和循环载荷的模拟,以表明所提出的概念的实施,而无需任何额外的复杂性,使当前模型从小循环菌株到大型单调的型号的各种应用。

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