Article ID Journal Published Year Pages File Type
7966671 Journal of Nuclear Materials 2015 33 Pages PDF
Abstract
Analysis of simulation results shows that self-interstitial atoms play a leading role in the self-diffusion processes in the materials studied. This fact can explain a remarkably high self-diffusion mobility observed experimentally for γ-U. The self-diffusion coefficients in γ-U calculated in this assumption agree with the data measured experimentally. It is shown that alloying of γ-U with Mo increase formation energy for self-interstitial atoms and decelerate their mobility. These changes lead to decrease of self-diffusion coefficients in U-Mo alloy compared to pure U.
Related Topics
Physical Sciences and Engineering Energy Nuclear Energy and Engineering
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