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First-principles localized cluster expansion study of the kinetics of hydrogen diffusion in homogeneous and heterogeneous Fe-Cr alloys

机译:Fe-Cr均相和异相合金中氢扩散动力学的第一性原理局部团簇扩展研究

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摘要

Metal alloys have a wide range of technological applications, from structural materials to catalysts. In many situations, the transport of hydrogen, whether intentionally for hydrogen storage and fuel cell applications or unintentionally in the case of tritium uptake in nuclear materials, is an important concern. Fe-Cr binary alloys, in particular, may be viewed as a simple model system to represent ferritic steels used in nuclear energy systems and, more generally, as a model binary alloy for examining the role of alloying elements on transport. In this work, we used density functional theory, cluster expansion, and kinetic Monte Carlo to study hydrogen kinetics in Fe-Cr alloys. In random homogeneous alloys, we observed that hydrogen diffusivity first decreased with increasing Cr content and then increased to its levels in pure Cr. Furthermore, the effects of heterogeneity, as might be induced by irradiation, were explored and it was concluded that local structural heterogeneities for the same overall Cr concentration may significantly affect the hydrogen diffusivity. The effect was attributed to the relative binding energy of hydrogen in different metals and this understanding was then utilized to predict hydrogen transport behavior in different element-segregated grain/grain boundary combinations and thus identify solute/solvent alloys where hydrogen transport might be either hindered or enhanced. Finally, we comment on the potential impact of radiation-induced segregation on hydrogen behavior in nuclear energy systems.
机译:从结构材料到催化剂,金属合金具有广泛的技术应用。在许多情况下,无论是有意用于储氢和燃料电池应用,还是无意在核材料中吸收tri的情况下,氢的运输都是一个重要的问题。尤其是,Fe-Cr二元合金可以看作是代表核能系统中使用的铁素体钢的简单模型系统,更一般地,可以看作是用于检验合金元素在运输中的作用的二元模型合金。在这项工作中,我们使用密度泛函理论,簇扩展和动力学蒙特卡洛方法研究了铁铬合金中的氢动力学。在无规均质合金中,我们观察到氢扩散率首先随着Cr含量的增加而降低,然后增加到纯Cr中的水平。此外,探讨了辐照可能引起的异质性影响,并得出结论,对于相同的总Cr浓度,局部结构异质性可能会显着影响氢的扩散率。该效应归因于氢在不同金属中的相对结合能,然后利用这种理解来预测在不同元素隔离的晶粒/晶粒边界组合中的氢迁移行为,从而确定可能阻碍或迁移氢的溶质/溶剂合金。增强。最后,我们评论了辐射诱发的分离对核能系统中氢行为的潜在影响。

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