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Flux-driven nucleation at interfaces during reactive diffusion

机译:反应扩散过程中界面处的磁通驱动成核

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Nucleation of intermetallic compounds and of voids at interfaces during reactive diffusion is treated with account of influence of the flux divergence in the nucleation regions of the real space as an additional term for drift in the size space (in Fokker-Planck equation for nucleation). Such approach enables the construction of effective Gibbs nucleation barrier which may (in the broad region of parameters) increase to infinity meaning the full suppression of nucleation, or, by the contrast, decrease assisting the nucleation. The introduced effective nucleation barriers depend on kinetic factors - on the ratio of diffusivities in nucleating and in neighboring phases. Thus, the competition of stable and metastable phases is reconsidered, as well as nucleation of Kirkendall/Frenkel voids at the interfaces.
机译:考虑到在实际空间的成核区域中的通量发散的影响,将金属间化合物的成核和界面处的空隙的成核作为尺寸空间中漂移的附加项考虑(在Fokker-Planck方程中用于成核)。这种方法使得能够构造有效的吉布斯成核屏障,该屏障可以(在较宽的参数范围内)增加到无穷大,这意味着对成核的完全抑制,或者相反,减少了对成核的辅助作用。引入的有效成核壁垒取决于动力学因素-取决于成核相和相邻相中的扩散率。因此,重新考虑了稳定相和亚稳相的竞争,以及界面处的柯肯德尔/弗伦克尔空洞成核。

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