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The Effect of Point Defects Interaction on Hydrogen Atom Diffusion in FCC- and BCC-Metals

机译:点缺陷相互作用对FCC和BCC金属中氢原子扩散的影响

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This work is devoted to simulation of potential barrier spectrum for'hydrogen atom and vacancy jumps in fee- and bec- metals taking into account the mutual effect of the point defects on the potential barrier spectrum and as a result the effect on complex defect diffusion in bec- and fec-metals. The molecular static and the Monte Carlo methods are used. The developed model allows us to determine a diffusion coefficient of the impurity atom depending on temperature and other parameters. The simulation of point defect random walk in lattice on the basis MC-method and potential barrier spectrum has gave an impulse toward an understanding of hydrogen motion on the atomic scale in metals, which is required to determine such important parameters as the diffusion coefficient of H, As well it allows us to understand reasons of more complicated behaviour of H in realistic metal in comparison with perfect metal.
机译:这项工作致力于模拟氢原子的势垒能谱,并考虑到点缺陷对势垒能谱的相互影响,从而模拟了金属和铍金属中的空位跃迁,从而影响了复杂缺陷扩散。 Bec和fec金属。使用了分子静态方法和蒙特卡洛方法。开发的模型使我们能够根据温度和其他参数确定杂质原子的扩散系数。基于MC方法和势垒谱的点缺陷随机游动在晶格中的模拟为理解金属中原子尺度上的氢运动提供了推动力,这对于确定H的扩散系数等重要参数是必不可少的同样,它也使我们能够理解与理想金属相比,现实金属中H行为更为复杂的原因。

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