Interaction of Hydrogen Atom with Edge Dislocation in Pd and Ni

I. Zorya, G. Poletaev, M. Starostenkov
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Abstract

The energy characteristics of interaction of hydrogen impurity with ½<110> edge dislocation in Pd and Ni were calculated by the method of molecular dynamics. It is shown that the dislocation is effective trap for hydrogen. At the same time the dislocation jogs increases its sorption capacity with respect to hydrogen, but reduces the diffusion mobility of hydrogen along the dislocation. The diffusion of hydrogen atoms in the dislocation region occurs mainly along the dislocation core. The energy of hydrogen migration along the dislocation, as our calculations have shown, is almost two times lower than in a defect-free crystal.
Pd和Ni中氢原子与边位错的相互作用
用分子动力学方法计算了钯和镍中氢杂质与½边位错相互作用的能量特征。结果表明,位错是有效的氢阱。同时位错的移动增加了其对氢的吸附能力,但降低了氢沿位错的扩散迁移率。氢原子在位错区的扩散主要沿位错核进行。正如我们的计算所显示的那样,氢沿位错迁移的能量几乎比无缺陷晶体低两倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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