The high burn-up structure in nuclear fuel
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference72 articles.
1. The chemical state of the fission products in oxide fuels
2. Transmission electron microscopy observation on irradiation-induced microstructural evolution in high burn-up UO2 disk fuel
3. Modelling the high burnup UO2 structure in LWR fuel
4. On the rim effect in high burnup UO2LWR fuels
5. An electron microscopy study of the RIM structure of a UO2 fuel with a high burnup of 7.9% FIMA
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1. Effect of grain size on irradiation-induced bubble evolution in high burn-up UO2: A phase-field study;Journal of Nuclear Materials;2024-12
2. Release of Cs, Sr and Rb from two high–burnup spent nuclear fuels: Effect of the dishing and the internal grain boundaries;Journal of Nuclear Materials;2024-09
3. Chernobyl fuel microparticles: uranium oxidation state and isotope ratio by HERFD-XANES and SIMS;Journal of Radioanalytical and Nuclear Chemistry;2024-08-29
4. Swift Au+9 ion irradiation-induced defects and alloy complexity effect on the mechanical hardness of NiCoCrFePd HEA and NiCoCrFe MEA;Journal of Applied Physics;2024-07-10
5. Mesoscale modeling of the effects of accelerated burnup on UO2 microstructural evolution;Journal of Nuclear Materials;2024-07
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