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Grain boundary sliding, triple junction disclinations and strain hardening in ultrafine-grained and nanocrystalline metals

机译:超细晶粒和纳米晶金属中的三界界面滑动,三界面露出和应变硬化

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摘要

A theoretical model is suggested which describes grain boundary (GB) sliding and its accommodation through dislocation slip in ultrafine-grained and nanocrystalline metals. The initial stage of the accommodating dislocation slip represents emission of lattice dislocations from triple junctions into grain interiors. The lattice dislocations emitted from a triple junction slip across a grain and are absorbed by an opposite GB where they are dissociated into GB dislocations that climb along the GB. In the situation where these GB sliding and accommodating processes are dominant, stress-strain dependences are calculated in ultrafine-grained copper. With the calculated dependences, we found that pronounced strain hardening occurs which is related to the accommodation processes and associated formation of disclinations at triple junctions of GBs. It is theoretically revealed that the special (new) strain hardening mechanism under discussion can play a significant role in enhancing ductility of ultrafine-grained and nanocrystalline metals at comparatively low temperatures. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一种理论模型,其描述了通过超细颗粒和纳米晶金属的位错滑滑动滑动及其容纳。容纳位错滑的初始阶段表示从三角点到晶粒内部的晶格脱位的排放。从三角形滑移横跨晶粒发射的晶格脱位,并被相对的GB吸收,在那里它们被解离沿着GB爬升的GB位错。在这些GB滑动和容纳过程的情况下,在超细粒化铜中计算应力 - 应变依赖性。利用计算的依赖性,我们发现发生明显的应变硬化,其与容纳过程有关并相关形成GBS的三重交叉点。理论上揭示了讨论的特殊(新的)菌株硬化机制可以在增强在相对低的温度下提高超细颗粒和纳米晶金属的延展性的显着作用。 (c)2017 Elsevier Ltd.保留所有权利。

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