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Thermodynamic Aspects of Diffusion Paths in Ternary Systems

机译:三元系统中扩散路径的热力学方面

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摘要

Description of diffusion paths is one of the most interesting and topical problems in experimental investigations of interdiffusion in multicomponent systems and, particularly, in ternary systems. The relationship between effective interdiffusion coefficients and diffusion paths in ternary systems has been discussed earlier but the specific influence of the mobility and thermodynamic properties of components on the characteristics of the diffusion path is still unclear. In this paper an attempt is made to clarify the separate influences of mobility and thermodynamics on the behavior of diffusion paths in ternary systems and the corresponding correlation is found. It is shown that in most cases the deviation of the diffusion path from linearity (an ideal system) is related to the deviation of the thermodynamic properties from the ideal. The results obtained are analyzed on the basis of thermodynamic data for the ternary system Cu-Fe-Ni.
机译:扩散路径的描述是多组分系统,特别是三元系统中互扩散实验研究中最有趣和最热门的问题之一。三元体系中有效互扩散系数与扩散路径之间的关系已在前面进行了讨论,但组分的迁移率和热力学性质对扩散路径特性的具体影响尚不清楚。本文试图阐明迁移率和热力学对三元扩散路径行为的独立影响,并找到了相应的相关性。结果表明,在大多数情况下,扩散路径与线性(理想系统)的偏差与热力学性质与理想值的偏差有关。根据三元体系Cu-Fe-Ni的热力学数据分析获得的结果。

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