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- W236208077 abstract "A special study of diffusion (heat conduction) from a thin layer at the boundary between two bodies with different characteristics is necessary for the solution of several important scientific and technical problems. These problems include, specifically, diffusion of vacancies in atoms adsorbed at the surface of bodies after contact has been established, diffusion of strong magnetic or orther field pulses, transfer of heat after it has been momentarily generated (for instance, during deformation of regions directly adjacent to the surfaces making contact), etc. The study of processes in powder metallurgy recently undergoing an intensive development, namely the study of sintered powder materials, of powder coatings, etc. confirms the importance of this problem. Diffusion phenomena are encountered essentially in situations involving bodies with different characteristics. Meanwhile, the problem of diffusion (heat conduction) has been solved only for identical bodies on both sides of the boundary [i]. A solution for the case of different bodies cannot be obtained by generalization. A special solution is required here, taking into account the particular conditions. Such a solution is not only important for practical applications but also of interest mathematically. i. Fundamental Equation. The problem of diffusion from an infinitesimally thin layer (momentary source emitting an amount q of diffusible substance from a surface of unit area in the plane x = 0 at the instant of time t = 0) into two bodies with different diffusion characteristics is solved on the basis of the equation" @default.
- W236208077 created "2016-06-24" @default.
- W236208077 creator A5006399507 @default.
- W236208077 date "1985-01-01" @default.
- W236208077 modified "2023-09-26" @default.
- W236208077 title "A solution is obtained to the problem of diffusion (heat conduction) from an in- finitesimally thin layer (momentary source) into two different semiinfinitely large bodies. This solution is used for calculating how much diffusion contri- butes to the strength of bond between a powder coating and a substrate." @default.
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