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Multilevel models of polycrystals using crystal plasticity: investigation of hardening laws influence on the macro effects of cyclic loading

机译:多晶型模型使用晶体塑性:硬化法对循环载荷宏观效应的调查

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The problem of constructing a physically based hardening laws of mono- and polycrystalline samples in multi-level theories using crystal plasticity is considered, these hardening laws should allow describing the process of the defect structure evolution of the material due to the intensive inelastic deformations. It is also should be applicable to the description of simple and cyclic loading. An approach to the construction of a general and a particular form of hardening law is proposed, which takes into account the interaction of full and split dislocations with each other, forming and destruction of dislocation barriers, annihilation of dislocations during reverse loading. Using the obtained hardening law, the known experimental effects of simple and cyclic loading are described.
机译:考虑了使用晶体可塑性的多级理论构建单晶样品的物理基于硬化定律的问题,这些硬化定律应允许描述由于强烈的非弹性变形引起的材料的缺陷结构演化的过程。它还应该适用于简单和循环加载的描述。提出了一种构建一般和特定形式的硬化定律的方法,这考虑了彼此的完全和分裂脱位的相互作用,使脱位屏障的形成和破坏,在反向载荷期间脱位。使用获得的硬化定律,描述了简单和循环载荷的已知实验效果。

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