A phase field modeling approach of cyclic fatigue crack growth

  • Phase field modeling of fracture has been in the focus of research for over a decade now. The field has gained attention properly due to its benefiting features for the numerical simulations even for complex crack problems. The framework was so far applied to quasi static and dynamic fracture for brittle as well as for ductile materials with isotropic and also with anisotropic fracture resistance. However, fracture due to cyclic mechanical fatigue, which is a very important phenomenon regarding a safe, durable and also economical design of structures, is considered only recently in terms of phase field modeling. While in first phase field models the material’s fracture toughness becomes degraded to simulate fatigue crack growth, we present an alternative method within this work, where the driving force for the fatigue mechanism increases due to cyclic loading. This new contribution is governed by the evolution of fatigue damage, which can be approximated by a linear law, namely the Miner’s rule, for damage accumulation. The proposed model is able to predict nucleation as well as growth of a fatigue crack. Furthermore, by an assessment of crack growth rates obtained from several numerical simulations by a conventional approach for the description of fatigue crack growth, it is shown that the presented model is able to predict realistic behavior.

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Metadaten
Verfasser*innenangaben:Christoph SchreiberORCiD, Charlotte Kuhn, Ralf Müller, Tarek Zohdi
URN:urn:nbn:de:hbz:386-kluedo-77388
DOI:https://doi.org/10.1007/s10704-020-00468-w
ISSN:1573-2673
Titel des übergeordneten Werkes (Deutsch):International Journal of Fracture
Verlag:Springer Nature -Springer
Dokumentart:Wissenschaftlicher Artikel
Sprache der Veröffentlichung:Englisch
Jahr der Fertigstellung:2020
Jahr der Erstveröffentlichung:2020
Veröffentlichende Institution:Rheinland-Pfälzische Technische Universität Kaiserslautern-Landau
Datum der Publikation (Server):01.03.2024
Ausgabe / Heft:225
Seitenzahl:12
Erste Seite:89
Letzte Seite:100
Quelle:https://link.springer.com/article/10.1007/s10704-020-00468-w
Fachbereiche / Organisatorische Einheiten:Kaiserslautern - Fachbereich Maschinenbau und Verfahrenstechnik
DDC-Sachgruppen:6 Technik, Medizin, angewandte Wissenschaften / 620 Ingenieurwissenschaften und Maschinenbau
Sammlungen:Open-Access-Publikationsfonds
Lizenz (Deutsch):Zweitveröffentlichung