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Molecular dynamics simulation on stability and diffusivity of hydrogen around a < 111 > symmetric tilt grain boundary in bcc-Fe

机译:bcc-Fe中<111>对称倾斜晶界周围氢的稳定性和扩散率的分子动力学模拟

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摘要

The effects of the grain boundary (GB) on the stability and diffusivity of hydrogen in bcc-Fe are investigated via a molecular dynamics (MD) simulation focusing on the symmetric tilt Sigma 19b, 111 46.8 degrees, {5 -3 -2} GB. MD simulation results show that H atoms are trapped around the GB and the binding energy per H atom is weakly dependent on the hydrogen concentration at the GB. In hydrogen diffusivity, the Sigma 19b GB induces an anisotropy reflecting its structure, and the diffusion on the GB becomes one-dimensional. For each diffusion direction, the effective hydrogen diffusivity shows a characteristic dependence on the hydrogen concentration in the system, which can be explained by two phenomena: trapping effect by the GB and blocking effect on the GB.
机译:通过侧重于对称倾斜Sigma 19b,<111> 46.8度,{5 -3 -2的对称倾斜度的分子动力学(MD)模拟,研究了晶界(GB)对氢在bcc-Fe中的稳定性和扩散率的影响。 } GB。 MD模拟结果表明,H原子被俘获在GB周围,每个H原子的结合能几乎不依赖于GB处的氢浓度。在氢扩散率中,Sigma 19b GB引起各向异性,反映了其结构,并且GB上的扩散变为一维。对于每个扩散方向,有效氢扩散率都显示出系统中氢浓度的特征依赖性,这可以用两种现象来解释:GB的俘获效应和对GB的阻滞效应。

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