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Influence of the microstructure and defects on the high cycle fatigue strength of 316L stainless steel under multiaxial loading

Communication avec acte
Auteur
GUERCHAIS, Raphaël
ccMOREL, Franck
206863 Laboratoire des Arts et Métiers ParisTech d'Angers - Procédés Matériaux Durabilité [LAMPA - PMD]
ccSAINTIER, Nicolas
ROBERT, Camille

URI
http://hdl.handle.net/10985/8716
Date
2014

Résumé

In the present study, the effects of both the microstructure and defects on the high cycle fatigue behavior of the 316L austenitic stainless steel are investigated thanks to finite element simulations of polycrystalline aggregates. The numerical analysis relies on a metallurgical and mechanical characterization. To complete the experimental study, load-controlled fatigue tests are also carried out to determine the fatigue limits at 2.106 cycles under uniaxial and multiaxial loading conditions using both smooth specimens and specimens containing an artificial hemispherical surface defect. In the finite element models, where the grain morphologies are explicitly modeled, the anisotropic behavior of each crystal is described by the generalized Hooke’s law and by a single crystal visco-plastic model. From the simulations carried out with different defect sizes and orientation sets, statistical informations regarding mesoscopic mechanical fields are analyzed. Then, using the FE results, the ability of a probabilistic fatigue criterion to predict the influence of defects and biaxiality on the average fatigue limits is evaluated thanks to a comparison with the experimental data.

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  • Laboratoire Angevin de Mécanique, Procédés et InnovAtion (LAMPA)

Documents liés

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  • Micromechanical study of the loading path effect in high cycle fatigue 
    Article dans une revue avec comité de lecture
    GUERCHAIS, Raphaël; ROBERT, Camille; ccMOREL, Franck; ccSAINTIER, Nicolas (Elsevier, 2014)
    In this work, an analysis of both the mechanical response at the grain scale and high cycle multiaxial fatigue criteria is undertaken using finite element (FE) simulations of polycrystalline aggregates. The metallic material ...
  • Étude micromécanique de l’influence de défauts sur la tenue en fatigue à grand nombre de cycles 
    Communication avec acte
    GUERCHAIS, Raphaël; ccSAINTIER, Nicolas; ccMOREL, Franck; ROBERT, Camille (Congrès Français de mécanique, 2013)
    The aim of this study is to analyse the influence of micro-notches on the fatigue behaviour of an electrolytic copper using finite element simulations of polycrystalline aggregates. In these simulations, in which the grains ...
  • Micromechanical investigation of the influence of defects in high cycle fatigue 
    Article dans une revue avec comité de lecture
    GUERCHAIS, Raphaël; ccSAINTIER, Nicolas; ccMOREL, Franck; ROBERT, Camille (Elsevier, 2014)
    This study aims to analyse the influence of geometrical defects (notches and holes) on the high cycle fatigue behaviour of an electrolytic copper based on finite element simulations of 2D polycrystalline aggregates. In ...
  • Influence of the microstructure and voids on the high-cycle fatigue strength of 316L stainless steel under multiaxial loading 
    Article dans une revue avec comité de lecture
    GUERCHAIS, Raphaël; ccMOREL, Franck; ccSAINTIER, Nicolas; ROBERT, Camille (Wiley-Blackwell, 2015)
    In the present study, the effects of both the microstructure and voids on the high-cycle fatigue behaviour of the 316L austenitic stainless steel are investigated by using finite element simulations of polycrystalline ...
  • The role of the microstructure and defects on crack initiation in 316L stainless steel under multiaxial high cycle fatigue 
    Communication avec acte
    GUERCHAIS, Raphaël; ccMOREL, Franck; ccSAINTIER, Nicolas (Trans Tech Publications inc., 2014)
    The aim of this study is to analyse the influence of both the microstructure and defects on the high cycle fatigue behaviour of the 316L austenitic stainless steel, using finite element simulations of polycrystalline ...

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