Interaction of dislocations in UO2 during high burn-up structure formation
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference35 articles.
1. A model for the effect of the progression of irradiation-induced recrystallization from initiation to completion on swelling of UO2 and U–10Mo nuclear fuels
2. DISCUSSION ABOUT HBS TRANSFORMATION IN HIGH BURN-UP FUELS
3. Model for evolution of crystal defects in UO2 under irradiation up to high burn-ups
4. Derivation of analytical expressions for the network dislocation density, change in lattice parameter, and for the recrystallized grain size in nuclear fuels
5. Irradiation-induced recrystallization in high burnup UO2 fuel
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1. Progress in the Modeling of High Burn up Structure: Application of the TRANSURANUS//MFPR-F Coupling to the NRC-192 Studsvik LOCA TEST;Springer Proceedings in Physics;2023-12-01
2. Micromechanical modeling of single crystal and polycrystalline UO2 at elevated temperatures;Journal of Nuclear Materials;2023-01
3. Elevated Temperature Nanoindentation Creep Study of Plastically Deformed and Spark Plasma Sintered UO2;Journal of Nuclear Materials;2021-03
4. Model for radiation damage-induced grain subdivision and its influence in U3Si2 fuel swelling;Annals of Nuclear Energy;2020-09
5. Model of nuclear fuel pellets densification under irradiation and isothermal conditions: Application to UO2 fuels;Journal of Nuclear Materials;2018-11
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