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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Confinement of motion of interstitial clusters and dislocation loops in BCC Fe-Cr alloys
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Confinement of motion of interstitial clusters and dislocation loops in BCC Fe-Cr alloys

机译:BCC Fe-Cr合金中间隙簇和位错环的运动限制

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摘要

This work is devoted to the study of the effect of Cr solutes on the mobility of self interstitial atom (SIA) clusters and small interstitial dislocation loops (of size up to a few nanometers) in concentrated Fe-Cr alloys. Atomistic simulations have been performed to characterize the variation of the free energy of interstitial loops in the Fe-l5Cr alloy using the experimentally determined profile of Cr distribution along the path of a loop. It is shown that the presence of randomly distributed Cr in Fe leads to the creation of local trapping configurations for small SIA clusters. The strength (trapping energy) and density of these configurations depend on the Cr content. On the contrary, large SIA clusters (which can be described as 1 2(1 1 1) dislocation loops) are strongly affected by the presence Cr-Cr pairs and larger Cr clusters, which act as barriers to their motion.
机译:这项工作致力于研究Cr溶质对Fe-Cr合金中自填原子(SIA)团簇和较小的填隙位错环(尺寸可达几纳米)的迁移率的影响。已经进行了原子模拟,以使用实验确定的沿环的路径分布的Cr分布来表征Fe-15Cr合金中间隙环的自由能的变化。结果表明,Fe中随机分布的Cr导致了小型SIA簇的局部俘获构型的产生。这些构型的强度(捕获能)和密度取决于Cr含量。相反,大型SIA簇(可以描述为1 2(1 1 1)位错环)受到Cr-Cr对和较大Cr簇的存在的强烈影响,而Cr-Cr对和它们的运动会成为障碍。

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