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Continuum analysis of dislocation pile-ups: influence of sources

机译:连续性位错堆积物的连续分析:来源的影响

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One explanation of the Hall-Fetch relationship is that dislocation pile-ups serve to enhance the stress felt at grain boundaries. This dislocation pile-up model results in a d(-1/2) dependence of the yield strength, with d the grain size. In fact, this dependence is observed often. However, the traditional pile-up picture neglects two important aspects of pile-up formation: firstly the existence of a threshold stress for dislocation production, and secondly the necessity of a finite-sized dislocation-fi-ee region in which a source may operate. In this paper, both of these aspects are addressed within a continuum model of the dislocation pile-ups. A closed-form expression is obtained for the dependence of yield stress on grain size and source characteristics. The continuum model agrees closely with the corresponding discrete dislocation model even when the pile-up contains as few as ten dislocations. [References: 17]
机译:霍尔-提取关系的一种解释是位错堆积有助于增强晶界处的应力。这种位错堆积模型导致屈服强度与d(-1/2)有关,且晶粒尺寸为d。实际上,这种依赖性经常被观察到。但是,传统的堆积图片忽略了堆积形成的两个重要方面:首先,存在位错产生的阈值应力;其次,必须有源可以在其中运行的有限尺寸的位错区域。 。在本文中,这两个方面都在位错堆积的连续模型中得到解决。对于屈服应力对晶粒尺寸和源特性的依赖性,获得了闭合形式。连续模型与相应的离散位错模型非常吻合,即使堆积中只有十个位错。 [参考:17]

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