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dc.contributor.author
 hal.structure.identifier
GALLITELLI, Donato
24541 Georgia Tech Lorraine [Metz]
dc.contributor.author
 hal.structure.identifier
BOYER, Vincent
24541 Georgia Tech Lorraine [Metz]
dc.contributor.author
 hal.structure.identifier
GELINEAU, Maxime
24541 Georgia Tech Lorraine [Metz]
dc.contributor.authorCOLAITIS, Yann
dc.contributor.authorROUHAUD, Emmanuelle
dc.contributor.authorRETRAINT, Delphine
dc.contributor.authorKUBLER, Régis
dc.contributor.authorDESVIGNES, Marc
dc.contributor.author
 hal.structure.identifier
BARRALLIER, Laurent
211915 Mechanics surfaces and materials processing [MSMP]
dc.date.accessioned2016
dc.date.available2017
dc.date.issued2016
dc.date.submitted2016
dc.identifier.issn1631-0721
dc.identifier.urihttp://hdl.handle.net/10985/10866
dc.description.abstractManufacturing industries perform mechanical surface treatments like shot peening at the end of the manufacturing chain to protect important working parts. This treatment modifies the near surface of the treated part with the introduction of compressive residual stresses due to the repeated impacts of the shot. Then, the treated part exhibits, not only a longer life, but also a better fretting behavior, an improved resistance to corrosion… The objective of the present paper is first to study the relation between the process parameters and the material state (residual stress and plastic variables…) for a complex geometry. Next, a numerical tool is proposed, able to predict this material state in a time frame that is consistent with industrial constraints. The originality of the proposed approach thus consists in the chaining of the different steps. The first step is to choose the process parameters for the shot peening process considering conventional or ultrasonic shot peening and model the shot dynamics for a complex geometry. Once the impact velocity field is known, the objective is to compute the local incompatible plastic deformation field due to the repeated impacts using analytical methods. Then, a finite element model is used to compute the residual and deformation fields in the considered mechanical part. The complete method has been performed on the model of a gear, a mechanical part that is most often shot peened and exhibits a complex geometry.
dc.language.isoen
dc.publisherElsevier Masson
dc.rightsPost-print
dc.subjectShot peening
dc.subjectModel
dc.subjectResidual stress
dc.subjectShot dynamics
dc.titleSimulation of shot peening: From process parameters to residual stress fields in a structure
ensam.embargo.terms2017-04
dc.identifier.doi10.1016/j.crme.2016.02.006
dc.typdocArticle dans une revue avec comité de lecture
dc.localisationCentre de Aix en Provence
dc.subject.halSciences de l'ingénieur: Génie des procédés
dc.subject.halSciences de l'ingénieur: Matériaux
dc.subject.halSciences de l'ingénieur: Mécanique
dc.subject.halSciences de l'ingénieur: Mécanique: Matériaux et structures en mécanique
dc.subject.halSciences de l'ingénieur: Mécanique: Mécanique des matériaux
ensam.audienceInternationale
ensam.page355-374
ensam.journalComptes Rendus Mécanique
ensam.volume344
ensam.issue4-5
ensam.peerReviewingOui
hal.identifierhal-01326264
hal.version1
hal.statusaccept


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