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Climb via vacancy diffusion of edge dislocations in 2D dislocation microstructures

机译:通过边缘位错在二维位错微观结构中的空位扩散进行爬升

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摘要

The prevention of strength degradation of components is one of the great challenges in solid mechanics. In particular, at high temperatures material may deform even at low stresses, a deformation mode known as deformation creep. One of the microstructural mechanisms that governs deformation creep is dislocation motion due to the absorption or emission of vacancies, which results in motion perpendicular to the glide plane, called dislocation climb. However, the importance of the dislocation network for the deformation creep remains far from being understood. In this study, a climb model that accounts for the dislocation network is developed, by solving the diffusion equation for vacancies in a region with a general dislocation distribution. The definition of the sink strength is extended, to account for the contributions of neighbouring dislocations to the climb rate. The model is then applied to dislocation dipoles and dislocation pile-ups, which are dense dislocation structures and it is found that the sink strength of dislocations in a pile-up is reduced since the vacancy field is distributed between the dislocations. Finally, the importance of the results for modelling deformation creep is discussed.
机译:防止部件强度下降是固体力学中的巨大挑战之一。特别是在高温下,即使在低应力下,材料也可能变形,这种变形模式称为变形蠕变。控制变形蠕变的微结构机制之一是由于空位的吸收或发射而引起的位错运动,其导致垂直于滑行平面的运动,称为位错爬升。然而,位错网络对于形变蠕变的重要性仍然远远没有被理解。在这项研究中,通过求解具有一般位错分布的区域中空位的扩散方程,开发了一种解释位错网络的爬升模型。扩展了下沉强度的定义,以解决相邻位错对爬升率的影响。然后将该模型应用于位错偶极子和位错堆积体,它们是密集的位错结构,并且发现由于空位场分布在位错之间,所以堆积体中位错的沉陷强度降低了。最后,讨论了结果对建模变形蠕变的重要性。

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