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An Examination of Diffusion Paths in Terms of Interdiffusion Fluxes and Interdiffusion Coefficients

机译:用互扩散通量和互扩散系数检验扩散路径

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Selected diffusion couples investigated in the Cu-based and Fe-based multicomponent systems are examined for diffusion path development, zero-flux planes, uphill diffusion, and internal constraints for diffusion paths. The couples are analyzed for interdiffusion fluxes and interdiffusion coefficients with the aid of the "MultiDiFlux" program. Eigenvalues and eigenvectors are also determined from the interdiffusion coefficients determined over various ranges of composition in the diffusion zone. Slopes of diffusion paths at selected sections, including the path ends, are related to interdiffusion coefficients, interdiffusion fluxes and/or eigenvectors. These relations are explored with selected single phase diffusion couples in the Cu-Ni-Zn and Fe-Ni-Al systems and the calculated path slopes are compared with those directly determined from the concentration profiles. Relations between the gradient of interdiffusion flux and the concentration gradient are examined for each component in a two-phase Cu-Ni-Zn diffusion couple. The research is supported by the National Science Foundation.
机译:研究了在铜基和铁基多组分系统中研究的选定扩散对,以了解扩散路径的发展,零通量平面,上坡扩散以及扩散路径的内部约束。借助“ MultiDiFlux”程序,分析了这对夫妻的互扩散通量和互扩散系数。本征值和本征向量也由在扩散区中各个组成范围上确定的互扩散系数确定。选定路径(包括路径末端)处的扩散路径的坡度与互扩散系数,互扩散通量和/或特征向量有关。通过选择Cu-Ni-Zn和Fe-Ni-Al系统中的单相扩散对来探索这些关系,并将计算出的路径斜率与从浓度曲线直接确定的路径斜率进行比较。对于两相Cu-Ni-Zn扩散对中的每个组分,检查互扩散通量的梯度与浓度梯度之间的关系。该研究得到美国国家科学基金会的支持。

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