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dc.contributor.author
 hal.structure.identifier
BLANCHE, Antoine
693 Laboratoire de Mécanique et Génie Civil [LMGC]
dc.contributor.author
 hal.structure.identifier
CHRYSOCHOOS, André
693 Laboratoire de Mécanique et Génie Civil [LMGC]
dc.contributor.author
 hal.structure.identifier
RANC, Nicolas
86289 Laboratoire Procédés et Ingénierie en Mécanique et Matériaux [PIMM]
dc.contributor.authorFAVIER, Véronique
dc.date.accessioned2015
dc.date.available2015
dc.date.issued2015
dc.date.submitted2015
dc.identifier.issn0014-4851
dc.identifier.urihttp://hdl.handle.net/10985/9826
dc.description.abstractThis paper presents an experimental device developed to detect and estimate dissipated energy during very high cycle fatigue tests (VHCF) at high loading frequency (20 kHz) and low stress (i.e. far below the yield stress). Intrinsic dissipation is computed using local expressions of the heat diffusion equation and thermal data fields provided by an infrared focal plane array camera. The results obtained from tests performed on pure copper specimens show that dissipated energy exists whatever the attainable stress range and show that the dissipated energy rate is not constant throughout the test. Both findings are respectively incompatible with the concepts of fatigue limit based on elastic shakedown or on stabilized cyclic state associated with the mechanical hysteresis loop (viscoplastic shakedown).
dc.language.isoen
dc.publisherSociety for Experimental Mechanics
dc.rightsPost-print
dc.subjectUltrasonic fatigue
dc.subjectInfrared thermography
dc.subjectFatigue limit
dc.subjectHysteresis loop
dc.subjectIntrinsic dissipation
dc.titleDissipation Assessments During Dynamic Very High Cycle Fatigue Tests
dc.identifier.doi10.1007/s11340-014-9857-3
dc.typdocArticle dans une revue avec comité de lecture
dc.localisationCentre de Paris
dc.subject.halSciences de l'ingénieur: Matériaux
dc.subject.halSciences de l'ingénieur: Mécanique
dc.subject.halSciences de l'ingénieur: Mécanique: Mécanique des structures
ensam.audienceInternationale
ensam.page699-709
ensam.journalExperimental Mechanics
ensam.volume55
hal.identifierhal-01178226
hal.version1
hal.statusaccept


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