Simulation research on the blister evolution behaviors of UMo/Zr monolithic fuel elements

Blister behavior is one of the main failure modes of UMo/Zr monolithic fuel elements during irradiation. The temperature of fuel elements may increase greatly so that the fuel elements may be destroyed. Post-irradiation annealing tests are used to study the blister behaviors of fuel elements under h...

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Main Authors: Tang Changbing, Yan Feng, Jiao Yongjun, Xin Yong, Pu Zengping, Xiao Zhong
Format: Article
Language:English
Published: Frontiers Media S.A. 2024-12-01
Series:Frontiers in Energy Research
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fenrg.2024.1450488/full
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author Tang Changbing
Yan Feng
Jiao Yongjun
Xin Yong
Pu Zengping
Xiao Zhong
author_facet Tang Changbing
Yan Feng
Jiao Yongjun
Xin Yong
Pu Zengping
Xiao Zhong
author_sort Tang Changbing
collection DOAJ
description Blister behavior is one of the main failure modes of UMo/Zr monolithic fuel elements during irradiation. The temperature of fuel elements may increase greatly so that the fuel elements may be destroyed. Post-irradiation annealing tests are used to study the blister behaviors of fuel elements under high temperature. In this study, a simulation method is developed based on the finite element method to study the evolution of blister behaviors of UMo/Zr monolithic fuel elements in the blister tests, taken into considering that the evolution of bubble pressure should be coupled with the deformation of cladding. The influence of creep rate of the cladding on the evolution of blister height is analyzed. The study shows that the unrecoverable creep deformation of the cladding, which occurs under high temperature, is the major factor in the increment of bubble height. The increase of bubble height mainly occurs during the heat preservation process and the initial stage of cooling process. The creep rate of cladding is positively related to the evolution of bubble height.
format Article
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institution DOAJ
issn 2296-598X
language English
publishDate 2024-12-01
publisher Frontiers Media S.A.
record_format Article
series Frontiers in Energy Research
spelling doaj-art-d51d9ec1bded45a8944f7a0e16b4d10e2025-08-20T02:48:54ZengFrontiers Media S.A.Frontiers in Energy Research2296-598X2024-12-011210.3389/fenrg.2024.14504881450488Simulation research on the blister evolution behaviors of UMo/Zr monolithic fuel elementsTang ChangbingYan FengJiao YongjunXin YongPu ZengpingXiao ZhongBlister behavior is one of the main failure modes of UMo/Zr monolithic fuel elements during irradiation. The temperature of fuel elements may increase greatly so that the fuel elements may be destroyed. Post-irradiation annealing tests are used to study the blister behaviors of fuel elements under high temperature. In this study, a simulation method is developed based on the finite element method to study the evolution of blister behaviors of UMo/Zr monolithic fuel elements in the blister tests, taken into considering that the evolution of bubble pressure should be coupled with the deformation of cladding. The influence of creep rate of the cladding on the evolution of blister height is analyzed. The study shows that the unrecoverable creep deformation of the cladding, which occurs under high temperature, is the major factor in the increment of bubble height. The increase of bubble height mainly occurs during the heat preservation process and the initial stage of cooling process. The creep rate of cladding is positively related to the evolution of bubble height.https://www.frontiersin.org/articles/10.3389/fenrg.2024.1450488/fullUMo/Zr monolithic fuel elementannealing testcreep rateblister heightfinite element method
spellingShingle Tang Changbing
Yan Feng
Jiao Yongjun
Xin Yong
Pu Zengping
Xiao Zhong
Simulation research on the blister evolution behaviors of UMo/Zr monolithic fuel elements
Frontiers in Energy Research
UMo/Zr monolithic fuel element
annealing test
creep rate
blister height
finite element method
title Simulation research on the blister evolution behaviors of UMo/Zr monolithic fuel elements
title_full Simulation research on the blister evolution behaviors of UMo/Zr monolithic fuel elements
title_fullStr Simulation research on the blister evolution behaviors of UMo/Zr monolithic fuel elements
title_full_unstemmed Simulation research on the blister evolution behaviors of UMo/Zr monolithic fuel elements
title_short Simulation research on the blister evolution behaviors of UMo/Zr monolithic fuel elements
title_sort simulation research on the blister evolution behaviors of umo zr monolithic fuel elements
topic UMo/Zr monolithic fuel element
annealing test
creep rate
blister height
finite element method
url https://www.frontiersin.org/articles/10.3389/fenrg.2024.1450488/full
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AT jiaoyongjun simulationresearchontheblisterevolutionbehaviorsofumozrmonolithicfuelelements
AT xinyong simulationresearchontheblisterevolutionbehaviorsofumozrmonolithicfuelelements
AT puzengping simulationresearchontheblisterevolutionbehaviorsofumozrmonolithicfuelelements
AT xiaozhong simulationresearchontheblisterevolutionbehaviorsofumozrmonolithicfuelelements