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dc.contributor.authorBELLETT, Daniel
dc.contributor.author
 hal.structure.identifier
MOREL, Franck
206863 Laboratoire des Arts et Métiers ParisTech d'Angers - Procédés Matériaux Durabilité [LAMPA - PMD]
dc.contributor.authorKOUTIRI, Imade
dc.contributor.authorPESSARD, Etienne
dc.date.accessioned2013
dc.date.available2013
dc.date.issued2013
dc.date.submitted2013
dc.identifier.issn0013-7944
dc.identifier.urihttp://hdl.handle.net/10985/7416
dc.description.abstractThe aim of this paper is to propose a flexible multiaxial modelling framework that is capable of combining two fatigue damage mechanisms so as to continuously describe the Kitagawa-Takahashi diagram. It is proposed that this diagram represents two distinct fatigue damage mechanisms: one associated with crack initiation (or microstructurally small cracks) and the other with crack propagation (or long cracks). It is further postulated that these damage mechanisms are more appropriately modelled using di erent fatigue criteria. A probabilistic modelling framework is proposed in which any two suitable fatigue criteria can be combined in order to simultaneously model both damage mechanisms and the transition between them. This framework is based on the weakest link hypothesis and results in a probabilistic Kitagawa-Takahashi type diagram.
dc.language.isoen_US
dc.publisherElsevier
dc.rightsPost-print
dc.subjectProbabilistic Kitagawa-Takahashi diagram
dc.subjectFatigue damage mechanisms
dc.subjectHigh cycle fatigue
dc.subjectSmall crack problem
dc.subjectDefects
dc.titleA mechanistic approach to the Kitagawa-Takahashi diagram using a multiaxial probabilistic framework
dc.identifier.doi10.1016/j.engfracmech.2013.06.001
dc.typdocArticle dans une revue avec comité de lecture
dc.localisationCentre de Angers
dc.subject.halSciences de l'ingénieur: Mécanique: Matériaux et structures en mécanique
dc.subject.halSciences de l'ingénieur: Mécanique: Mécanique des matériaux
dc.subject.halSciences de l'ingénieur: Mécanique: Mécanique des solides
ensam.audienceInternationale
ensam.page89-104
ensam.journalEngineering Fracture Mechanics
ensam.volume109
hal.identifierhal-00875771
hal.version1
hal.submission.permittedupdateMetadata
hal.statusaccept


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