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首页> 外文期刊>Acta Materialia >A FINITE DIFFERENCE CALCULATION OF VACANCY MIGRATION UNDER NON-STEADY STATE CONDITIONS
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A FINITE DIFFERENCE CALCULATION OF VACANCY MIGRATION UNDER NON-STEADY STATE CONDITIONS

机译:非稳态条件下空位迁移的有限差分计算

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摘要

The hydrogenation of metals, often a rapid process, may lead to the production of high vacancy concentrations in the solid when equilibrium is reached. The achievement of equilibrium in this “ upquench- ing” process depends, at least in part, upon the migration of vacancies from the surface into the interior of the solid. Because individual vacancy jump frequencies may depend on position within the vacancy density gradient, particularly when the solid is under an applied stress, analytical solutions of Fick's second law are not appropriate. A finite difference method has been developed to treat such vacancy diffusion pro- blems and applied to vacancy migration in nickel.
机译:当达到平衡时,金属的氢化通常是一个快速的过程,可能导致固体中产生高的空位浓度。在这种“骤升”过程中达到平衡至少部分取决于空位从表面到固体内部的迁移。由于各个空位跳跃频率可能取决于空位密度梯度内的位置,特别是当固体处于外加应力下时,因此不适合使用Fick第二定律的解析解。已经开发出一种有限差分方法来处理这种空位扩散问题,并将其应用于镍中的空位迁移。

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