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A Model for Boundary Diffusion Controlled Creep in Polycrystalline Materials
Journal of Applied Physics · 1963 · Vol. 34(6) · pp. 1679–1682
R. L. Coble✉(Massachusetts Institute of Technology)
Abstract
The creep rate (ė) predicted by the boundary diffusion (Db) model is ė≃150σDbWΩ/(GS)3kT, where σ is the stress, W is the boundary width, (GS) is the average grain size, and Ω is vacancy volume. The stress dependence is the same as the lattice diffusion model, given by C. Herring, while the grain size dependence and the numerical constant are greater for boundary diffusion. Discussion of the mechanism of creep in polycrystalline alumina is based on the differences between the lattice and boundary diffusion models.
High Temperature Alloys and CreepAdvanced Mathematical Modeling in EngineeringAluminum Alloys Composites PropertiesGrain boundary diffusion coefficientCreepLattice diffusion coefficientMaterials scienceGrain boundaryCrystalliteDiffusion creepCondensed matter physicsEffective diffusion coefficientVacancy defect
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References
Diffusional Viscosity of a Polycrystalline Solid
Journal of Applied Physics · 1950 · 2,439 citations
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