Uncovering the hydride orientation-mediated hoop fatigue mechanism in a zirconium alloy cladding tube
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference54 articles.
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2. Unravelling the effect of hydrogen on microstructure evolution under low-cycle fatigue in a high-manganese austenitic TWIP steel;An;Int. J. Plast.,2020
3. Progressive modelling and experimentation of hydrogen diffusion and precipitation in anisotropic polycrystals;Abdolvand;Int. J. Plast.,2019
4. Crystallographic evaluation of low cycle fatigue crack growth in a polycrystalline Ni based superalloy;Barat;Int. J. Plast.,2022
5. Micro-scale fracture experiments on zirconium hydrides and phase boundaries;Chan;J. Nucl. Mater.,2016
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2. Repair of embrittlement induced by different hydride configurations by dissolving partial hydrides using pulsed electric current;International Journal of Hydrogen Energy;2024-01
3. On the effects of transformation strain induced by hydride precipitation;Acta Materialia;2023-12
4. Nanoindentation study of δ-phase zirconium hydride using the crystal plasticity model;International Journal of Plasticity;2023-08
5. Hydrogen embrittlement prompt fracture in Ni-based single crystal superalloy;Journal of Materials Research and Technology;2023-07
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