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Characterization of dislocation loops and chromium-rich precipitates in ferritic iron-chromium alloys as means of void swelling suppression

机译:铁素体铁铬合金中位错环和富铬沉淀物的表征,作为抑制空隙膨胀的手段

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摘要

We have used both ab initio and empirical potential based molecular dynamics and static calculations to parameterize a model accounting for the mobility of self-interstitial clusters and small dislocation loops in Fe-Cr alloys depending on Cr content. Particularly, we have considered the interval of 5-15% of Cr, corresponding to the typical concentration of Cr in ferritic/martensitic steels. The mobility of self-interstitial clusters and small dislocation loops was found to be strongly reduced in the presence of Cr due to attractive interaction between self-interstitials and Cr atoms, whereas Cr-rich precipitates act as repulsive obstacles. The results obtained allow the experimental trend of swelling measurements in neutron and high-energy electron irradiated Fe-Cr alloys to be interpreted and explained. (C) 2007 Elsevier B.V. All rights reserved.
机译:我们已经使用了从头算和基于经验势的分子动力学和静态计算对参数化模型进行参数化,该模型考虑了根据Cr含量,Fe-Cr合金中自填簇和小位错环的迁移率。特别是,我们考虑了5-15%的Cr区间,这对应于铁素体/马氏体钢中Cr的典型浓度。发现由于自填隙层和Cr原子之间的吸引相互作用,在Cr存在下自填隙团簇和小的位错环的迁移性大大降低,而富含Cr的沉淀物则作为排斥障碍。获得的结果可以解释和解释中子和高能电子辐照的Fe-Cr合金中溶胀测量的实验趋势。 (C)2007 Elsevier B.V.保留所有权利。

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