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Che, Chengjian; Liu, Ran; Wang, Man; Xiong, Si; Gao, Yunfei; Li, Qun (2026) Phase field modeling of crack propagation based on hydrogen pressure theory. Computational Materials Science, 269. doi:10.1016/j.commatsci.2026.114682

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Reference TypeJournal (article/letter/editorial)
TitlePhase field modeling of crack propagation based on hydrogen pressure theory
JournalComputational Materials Science
AuthorsChe, ChengjianAuthor
Liu, RanAuthor
Wang, ManAuthor
Xiong, SiAuthor
Gao, YunfeiAuthor
Li, QunAuthor
Year2026 (May)Volume269
PublisherElsevier BV
DOIdoi:10.1016/j.commatsci.2026.114682Search in ResearchGate
Generate Citation Formats
Mindat Ref. ID19810184Long-form Identifiermindat:1:5:19810184:2
GUID0
Full ReferenceChe, Chengjian; Liu, Ran; Wang, Man; Xiong, Si; Gao, Yunfei; Li, Qun (2026) Phase field modeling of crack propagation based on hydrogen pressure theory. Computational Materials Science, 269. doi:10.1016/j.commatsci.2026.114682
Plain TextChe, Chengjian; Liu, Ran; Wang, Man; Xiong, Si; Gao, Yunfei; Li, Qun (2026) Phase field modeling of crack propagation based on hydrogen pressure theory. Computational Materials Science, 269. doi:10.1016/j.commatsci.2026.114682
In(2026) Computational Materials Science Vol. 269. Elsevier BV

References Listed

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Tan (2025) Int. J. Mech. Sci. A phase-field fracture model for piezoelectrics in hydrogen-rich environment 291
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Diddige (2025) Comput. Methods Appl. Mech. Eng. Phase-field modeling of hydrogen-promoted fracture: natural incorporation of hydrostatic stress dependencies via a chemical potential-based variational formulation 445
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