Validation of an energy-based fatigue life model for fibre reinforced plastics under different stress ratios
Publikation: Beitrag in Buch/Konferenzbericht/Sammelband/Gutachten › Beitrag in Konferenzband › Beigetragen › Begutachtung
Beitragende
Abstract
The energy-based fatigue model presented in this work overcomes different shortcomings of existing model approaches, such as the need of separated assumptions for constant life diagrams. By using the range of the normalised strain energy density and a probabilistic based mode interaction approach, a failure mode dependent fatigue model for CFRP is established for directly predicting constant life diagrams and calculating the fatigue life for multiaxial loads with constant amplitude. In this contribution, the ply-based model and some of its main features, such as the consideration of residual stresses or of mode interactions at general threedimensional stress states, are shortly summarised. The stepwise model validation on different literature datasets is considered in more detail, including prediction of SN-curves with scatter band and constant life diagrams.
Details
Originalsprache | Englisch |
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Titel | 14th WCCM-ECCOMAS Congress 2020 |
Redakteure/-innen | F. Chinesta, R. Abgrall, O. Allix, M. Kaliske |
Seitenumfang | 10 |
Band | 100 |
Publikationsstatus | Veröffentlicht - 11 März 2021 |
Peer-Review-Status | Ja |
Konferenz
Titel | 14th World Congress in Computational Mechanics |
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Untertitel | ECCOMAS Congress 2020 |
Kurztitel | WCCM-ECCOMAS |
Veranstaltungsnummer | |
Dauer | 11 - 15 Januar 2021 |
Webseite | |
Ort | Online |
Stadt |
Externe IDs
Scopus | 85122025083 |
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ORCID | /0000-0003-1370-064X/work/142243436 |
ORCID | /0000-0002-2280-7580/work/142252478 |
Schlagworte
Schlagwörter
- Computing Methods, FibreReinforced Plastics, Mean Stress Influence, Service Strength Analysis, Fatigue, Model Validation