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Inhomogeneous swelling near grain boundaries in irradiated materials: cavity nucleation and growth saturation effects

机译:辐照材料中谷物边界附近的不均匀肿胀:腔成核和生长饱和效应

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The effect of inhomogeneous nucleation arid growth of cavities near grain boundaries illustrates the failure of the standard rate theory to describe the kinetics of phase transformations in irradiated materials under cascade damage conditions. The enhanced swelling observed near grain boundaries is believed to result from the competition between the diffusional growth of cavities and their shrinkage due to the interaction with mobile interstitial clusters. Swelling rates associated with the two processes behave m a radically different way as a function of the size of growing cavities. For a spatially homogeneous distribution of cavities this gives rise to the saturation of swelling in the limit of large irradiation doses. We investigate the evolution of the population of cavities nucleating and growing near a planar grain boundary. We show that a cavity growing near the boundary is able to reach a size that is substantially larger than the size of a cavity growing ill the interior region of the grain. For a planar grain boundary the magnitude of swelling at maximum is found to be up to eight times higher than the magnitude of swelling ill the grain interior.
机译:在晶界附近的空腔生长的效果的影响说明了标准速率理论的故障描述了级联损伤条件下辐照材料中相变的动力学。观察到近晶界附近的增强肿胀据信,由于与移动间质簇的相互作用而导致腔腔的漫射和收缩之间的竞争。与两种过程相关的膨胀率表现为像生长腔尺寸的函数的透视率。对于空腔的空间均匀分布,这导致大辐射剂量极限膨胀的饱和度。我们调查腔内患者群体的演变,在平面晶界附近生长。我们表明,在边界附近的腔体能够达到大小,该尺寸基本上大于生长颗粒的内部区域的腔体的尺寸。对于平面晶界,最大肿胀的幅度达到高达颗粒内部肿胀的幅度高达八倍。

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