Why a steady state void size distribution in irradiated UO2? A modeling approach
Author:
Funder
CEA
EDF
AREVA
Publisher
Elsevier BV
Subject
Instrumentation,Nuclear and High Energy Physics
Reference34 articles.
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4. Formation and growth of intragranular fission gas bubbles in UO2 fuels with burnup of 6–83GWd/t;Kashibe;JNM,1993
5. D. Olander, Fundamental Aspects of Nuclear Reactor Fuel Elements, Technical information center, Office of public affairs, energy research and development administration, 1976.
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1. Evolution of pressurized xenon bubble and response of uranium dioxide matrix: A molecular dynamics study;Journal of Nuclear Materials;2021-02
2. Charge influence on point defect interactions with xenon bubbles in uranium dioxide;Journal of Applied Physics;2020-07-14
3. Changes in voids induced by ion irradiations in UO2: In situ TEM studies;Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms;2020-01
4. Kinetic Monte Carlo Simulations of Irradiation Effects;Comprehensive Nuclear Materials;2020
5. Radiation Effects in UO2;Comprehensive Nuclear Materials;2020
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