A model of the threshold stress intensity factor, KIH, for delayed hydride cracking of Zr–2.5Nb alloy
Author:
Publisher
Elsevier BV
Subject
Nuclear Energy and Engineering,General Materials Science,Nuclear and High Energy Physics
Reference22 articles.
1. Assessment of aging of Zr2.5Nb pressure tubes in CANDU™ reactors
2. The initiation of delayed hydride cracking at a nominally smooth surface
3. Unified model of hydride cracking based on elasto-plastic energy release rate over a finite crack extension
4. Criteria of fracture initiation at hydrides in zirconium alloys II. Shallow notch
5. Threshold stress criterion for delayed hydride crack initiation at a blunt notch in zirconium alloys
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1. Micro-mechanisms of the ductile-to-brittle transition in hydrogenated zirconium alloys: A review and a comparison analysis of experimental data and theoretical approaches;Engineering Failure Analysis;2024-05
2. Numerical analysis of multi-field coupling behaviors of delayed hydride cracking for thin plate-type Zr-2.5Nb specimens;Engineering Fracture Mechanics;2024-01
3. Effects of irradiation on the multi-field coupling delayed hydride cracking behavior of zirconium alloys;Journal of Nuclear Materials;2022-05
4. Weight function solution of stress intensity factors for delayed hydride cracking of zirconium alloys;Journal of Nuclear Materials;2020-10
5. Delayed hydride cracking of Zr-2.5%Nb pressure tube material due to partially constrained precipitates;Journal of Nuclear Materials;2019-01
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