The temperature dependence of grain-boundary diffusion of65Zn in polycrystalline aluminium
- 1 November 1987
- journal article
- research article
- Published by Taylor & Francis in Philosophical Magazine A
- Vol. 56 (5) , 659-671
- https://doi.org/10.1080/01418618708204479
Abstract
It is shown that the penetration plots of the grain-boundary diffusion of 65Zn in polycrystalline Al samples are curved at fixed temperatures and that this upward curvature changes with the annealing time. The penetration profiles can be interpreted in terms of sub-boundary diffusion characterized by the parameter P 1 (= D 1 K 1δ, where D 1 is the boundary diffusion coefficient, K is the segregation factor and δ is the grain-boundary width) as well as by a distribution of diffusion parameters for high-angle boundaries. The range of variation of the diffusion parameters for general large-angle grain boundaries can be characterized by the parameters P 1, P 3 and P 4. The temperature dependence of P 1, P 2 and P 3 has also been determined. It is concluded that if we approximate the penetration function by one effective slope in the B-kinetic regime of grain-boundary diffusion then the weight of different grain boundaries (with different grain-boundary diffusion coefficients) can vary greatly in the effective diffusion parameter at different temperatures. This can lead to upward curvature of the Arrhenius function. Since the perturbations caused by Zn atoms in Al are very weak (Ki ≈ 1), our results reflect a general property of tracer grain-boundary self-diffusion in polycrystalline metals as well.Keywords
This publication has 11 references indexed in Scilit:
- Simple structural unit model for core-dependent properties of symmetrical tilt boundariesScripta Metallurgica, 1983
- Diffusion of65Zn in dilute AlCu, AlCuZn, AlSi, and AlSiZn alloysPhilosophical Magazine A, 1983
- On a possible temperature dependence of the activation energy for grain boundary diffusion in metalsScripta Metallurgica, 1978
- Diffusion of65Zn in Al-Zn solid solutionsPhysica Status Solidi (a), 1975
- Untersuchung der Korngrenzendiffusion von Zn‐65 in α‐Aluminium‐Zink‐LegierungenCrystal Research and Technology, 1974
- Diffusion of zinc in polycrystalline aluminiumPhysica Status Solidi (a), 1972
- Grain Boundary Impurity DiffusionPhysica Status Solidi (b), 1966
- Lattice and Grain Boundary Diffusion in PolycrystalsTransactions of the Japan Institute of Metals, 1961
- Grain Boundary and Lattice Diffusion in Polycrystalline BodiesJournal of Applied Physics, 1960
- CXXXVIII. Concentration contours in grain boundary diffusionJournal of Computers in Education, 1954