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Diffusive shrinkage of a void within a grian of a stressed polycrystal

机译:应力多晶晶粒内空隙的扩散收缩

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摘要

A method to predict the shrinkage rate of a void centered at an equiaxial grain under hydrostatic pressure is developed. The rate process is controlled by lattice diffusion under the combined influence of void surface energy, grain boundary interface energy and elastic energy stored in the solid. A dimensionless loading parameter that controls the void evolving is introduced. Below a certain value of this parameter the void will be rounded and is stable. Then the shrinkage behavior of the voids is described by the parameters controlling the lattice diffusion. It is found that only gas-free voids could be totally eliminated through lattice diffusion; for a gas-filled void, the internal pressure produced by the gas firstly retards the rate of the shrinkage and eventually stops the shrinkage process as it becomes high enough. (C) 2003 Elsevier Science Ltd. All rights reserved. [References: 28]
机译:提出了一种在静水压力下预测以等轴晶为中心的空隙的收缩率的方法。在空隙表面能,晶界界面能和固体中存储的弹性能的综合影响下,晶格扩散控制速率过程。引入了控制空洞演化的无量纲加载参数。低于此参数的某个值,空隙将被四舍五入且稳定。然后,通过控制晶格扩散的参数来描述空隙的收缩行为。发现只有无气体的空隙可以通过晶格扩散被完全消除。对于充满气体的空隙,气体产生的内部压力首先会延迟收缩率,并在其变得足够高时最终停止收缩过程。 (C)2003 Elsevier ScienceLtd。保留所有权利。 [参考:28]

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