Cohesive zone modeling of creep–fatigue crack propagation with dwell time
Author:
Affiliation:
1. Beijing Institute of Control Engineering, China Aerospace Science and Technology Corporation, Beijing, China
2. School of Mechanical Engineering, Beijing Institute of Technology, Beijing, China
3. Beijing Electric Vehicle Co., Ltd, Beijing, China
Publisher
SAGE Publications
Subject
Mechanical Engineering
Link
http://journals.sagepub.com/doi/pdf/10.1177/1687814017721144
Reference28 articles.
1. Creep, fatigue and oxidation in crack growth in advanced nickel base superalloys
2. The interactions between fatigue, creep and environmental damage in Ti 6246 and Udimet 720Li
3. Effects of temperature and hold time on creep-fatigue crack-growth behavior of HAYNES® 230® alloy
4. Crack growth micro-mechanisms in the IN718 alloy under the combined influence of fatigue, creep and oxidation
5. Oxygen enhanced crack growth in nickel-based superalloys and materials damage prognosis
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2. Prediction of the high temperature crack propagation in the AISI 304L steel using the cohesive approach;AIP Conference Proceedings;2024
3. Cohesive Zone Model to Investigate Complex Soft Adhesive Failure: State-of-the-Art Review;International Journal of Applied Mechanics;2023-06-30
4. A new creep-fatigue crack growth model and a correlation of the creep-fatigue crack growth rate with unified constraint parameter;International Journal of Fatigue;2023-01
5. Cohesive zone model for mode-I fracture with viscoelastic-sensitivity;Engineering Fracture Mechanics;2019-11
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