Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7968037 | Journal of Nuclear Materials | 2014 | 7 Pages |
Abstract
We present the results of a combination of static and dynamic simulations employing empirical potentials, investigating the structures of dislocations in UO2 and show how the dislocation core structure influences the rate of O2â and U4+ diffusion along the dislocation (i.e. pipe diffusion). In the region immediately surrounding the dislocations there is a significant reduction in the activation energies and diffusion coefficients for O2â and U4+ diffusion, however only out to a cylindrical radius of â20Â Ã
from the dislocation centre. The contribution of pipe diffusion to the overall O2â and U4+ diffusion is also discussed.
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Nuclear Energy and Engineering
Authors
Samuel T. Murphy, Eleanor E. Jay, Robin W. Grimes,