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Controlling Plastic Flow across Grain Boundaries in a Continuum Model

机译:在连续体模型中控制跨晶界的塑性流动

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摘要

A framework for modeling controlled plastic flow through grain boundaries using a continuum plasticity theory, phenomenological mesoscopic field dislocation mechanics (PMFDM), is presented in this article. The developed tool is used to analyze the effect of different classes of constraints to plastic flow through grain boundaries, as it relates to dislocation microstructure development and mechanical response of a bicrystal. It is found that in the case of low misorientation angle between adjacent grains, impenetrable grain boundaries cause significant work hardening as compared to penetrable grain boundaries due to the accumulation of excess dislocations along them. However, a penetrable grain boundary with a high misorientation angle effectively behaves as an impenetrable boundary, with respect to the stress-strain response.
机译:本文介绍了使用连续可塑性理论(现象学的介观场错位力学(PMFDM))对通过晶粒边界的受控塑性流动进行建模的框架。所开发的工具用于分析不同种类的约束对流经晶界的塑性的影响,因为它涉及位错微结构的发展和双晶的机械响应。已经发现,在相邻晶粒之间的低取向角的情况下,由于沿晶粒的过多位错的积累,与可渗透的晶粒边界相比,不可渗透的晶粒边界导致显着的加工硬化。然而,就应力-应变响应而言,具有高取向差角的可穿透晶粒边界有效地表现为不可穿透的边界。

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