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首页> 外文期刊>Journal of Materials Research >Grain boundary self-diffusion in Ni: Effect of boundary inclination
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Grain boundary self-diffusion in Ni: Effect of boundary inclination

机译:镍中晶界自扩散:边界倾角的影响

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We examined the influence of the boundary plane on grain-boundary diffusion in Ni through a series of molecular dynamics simulations. A series of (010) SIGMA 5 tilt boundaries, including several high symmetry and low symmetry boundary planes, were considered. The self-diffusion coefficient is a strong function of boundary inclination at low temperature but is almost independent of inclination at high temperature. At all temperatures, the self-diffusion coefficients are low when at least one of the two grains has a normal with low Miller indices. The grain boundary self-diffusion coefficient is an Arrhenius function of temperature. The logarithm of the pre-exponential factor in the Arrhenius expression was shown to be nearly proportional to the activation energy for diffusion. The activation energy for self-diffusion in a (103) symmetric tilt boundary is much higher than in boundaries with other inclinations. We discuss the origin of the boundary plane density-diffusion coefficient correlation.
机译:我们通过一系列分子动力学模拟研究了边界平面对镍中晶界扩散的影响。考虑了一系列(010)SIGMA 5倾斜边界,包括几个高对称性和低对称性的边界平面。自扩散系数是低温下边界倾角的强函数,但几乎与高温下的倾角无关。在所有温度下,当两个晶粒中的至少一个具有低米勒指数的法线时,自扩散系数就很低。晶界自扩散系数是温度的阿累尼乌斯函数。在Arrhenius表达式中,指数前因子的对数显示与扩散的激活能几乎成正比。 (103)对称倾斜边界中的自扩散激活能量远高于其他倾斜边界中的。我们讨论了边界平面密度-扩散系数相关性的起源。

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