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Creep-thermal fatigue behavior of thin-walled structures with holes and a creep-thermal fatigue-oxidation phase field model

International Journal of Fatigue
2025 | Journal article
EID:

2-s2.0-85208588604

Part of ISSN: 01421123
Contributors: Du, C.; Cui, H.; Zhang, H.
Source: Self-asserted source
Chenyu Du via Scopus - Elsevier
grade
Preferred source (of 2)‎

Fatigue fracture behavior under thermal cyclic loads: Experimental methods, physical regularities, and damage mechanisms

Engineering Failure Analysis
2025 | Journal article
EID:

2-s2.0-86000451919

Part of ISSN: 13506307
Contributors: Du, C.; Cui, H.; Zhang, H.
Source: Self-asserted source
Chenyu Du via Scopus - Elsevier
grade
Preferred source (of 2)‎

Phase field modeling of thermal fatigue crack growth in elastoplastic solids and experimental verification

Mechanics of Materials
2024 | Journal article
EID:

2-s2.0-85176233313

Part of ISSN: 01676636
Contributors: Du, C.; Cui, H.; Zhang, H.; Cai, Z.; Zhai, W.
Source: Self-asserted source
Chenyu Du via Scopus - Elsevier
grade
Preferred source (of 2)‎

Thermal fatigue behaviors of thin-walled structures with holes: Experiments and phase field fracture modeling

International Journal of Fatigue
2024 | Journal article
EID:

2-s2.0-85190969160

Part of ISSN: 01421123
Contributors: Du, C.; Cui, H.; Zhang, H.
Source: Self-asserted source
Chenyu Du via Scopus - Elsevier
grade
Preferred source (of 2)‎

Applications of Phase Field Methods in Modeling Fatigue Fracture and Performance Improvement Strategies: A Review

Metals
2023-04-05 | Journal article
Part of ISSN: 2075-4701
Contributors: Haitao Cui; Chenyu Du; Zhang Hongjian
Source: Self-asserted source
Chenyu Du
grade
Preferred source (of 2)‎