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Numerical simulation of sheet metal forming using anisotropic strain-rate potentials

Article dans une revue avec comité de lecture
Auteur
RABAHALLAH, Meziane
BOUVIER, Salima
239210 Laboratoire des Propriétés Mécaniques et Thermodynamiques des Matériaux [LPMTM]
BACROIX, Brigitte
239210 Laboratoire des Propriétés Mécaniques et Thermodynamiques des Matériaux [LPMTM]
ccBALAN, Tudor
178323 Laboratoire d'Etude des Microstructures et de Mécanique des Matériaux [LEM3]

URI
http://hdl.handle.net/10985/9907
DOI
10.1016/j.msea.2009.03.078
Date
2009
Journal
Materials Science and Engineering: A

Résumé

For numerical simulation of sheet metal forming, more and more advanced phenomenological functions are used to model the anisotropic yielding. The latter can be described by an adjustment of the coefficients of the yield function or the strain rate potential to the polycrystalline yield surface determined using crystal plasticity and X-ray measurements. Several strain rate potentials were examined by the present authors and compared in order to analyse their ability to model the anisotropic behaviour of materials using the methods described above to determine the material parameters. Following that, a specific elastic-plastic time integration scheme was developed and the strain rate potentials were implemented in the FE code. Comparison of the previously investigated potentials is continued in this paper in terms of numerical predictions of cup drawing, for different bcc and fcc materials. The identification procedure is shown to have an important impact on the accuracy of the FE predictions.

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Documents liés

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  • Parameter identification of advanced plastic potentials and impact on plastic anisotropy prediction 
    Article dans une revue avec comité de lecture
    RABAHALLAH, Meziane; BOUVIER, Salima; BACROIX, Brigitte; BARLAT, Frédéric; CHUNG, Kwansoo; TEODOSIU, Cristian; ccBALAN, Tudor (Elsevier, 2009)
    In the work presented in this paper, several strain rate potentials are examined in order to analyze their ability to model the initial stress and strain anisotropy of several orthotropic sheet materials. Classical quadratic ...
  • Non-quadratic anisotropic potentials based on linear transformation of plastic strain rate 
    Article dans une revue avec comité de lecture
    KIM, Daeyong; BARLAT, Frédéric; BOUVIER, Salima; RABAHALLAH, Meziane; CHUNG, Kwansoo; ccBALAN, Tudor (Elsevier, 2007)
    In this paper, anisotropic strain rate potentials based on linear transformations of the plastic strain rate tensor were reviewed in general terms. This type of constitutive models is suitable for application in forming ...
  • Time integration scheme for elastoplastic models based on anisotropic strain-rate potentials 
    Article dans une revue avec comité de lecture
    RABAHALLAH, Meziane; ccBALAN, Tudor; BOUVIER, Salima; TEODOSIU, Cristian (Wiley, 2009)
    Modelling of plastic anisotropy requires the definition of stress potentials (coinciding with the yield criteria in case of the associated flow rules) or, alternatively, plastic strain-rate potentials. The latter approach ...
  • Orthotropic strain rate potentials using multiple linear transformations 
    Article dans une revue avec comité de lecture
    RABAHALLAH, Meziane; BARLAT, Frédéric; ccBALAN, Tudor (Elsevier, 2009)
    This paper reviews a class of anisotropic plastic strain-rate potentials, based on linear transformations of the plastic strain-rate tensor. A new formulation is proposed, which includes former models as particular cases ...
  • Modelling the effect of microstructure evolution on the macroscopic behavior of single phase and dual phase steels: Application to sheet forming process 
    Conférence invitée
    BOUVIER, Salima; CARVALHO RESENDE, Tales; ccBALAN, Tudor; ccABED-MERAIM, Farid (2015)
    The aim of this work is to develop a dislocation density based model for IF and DP steels that incorporates details of the microstructure evolution at the grain-size scale. The model takes into account (i) the contribution ...

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