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Strain localization analysis for single crystals and polycrystals: Towards microstructure-ductility linkage

Article dans une revue avec comité de lecture
Auteur
FRANZ, Gérald
39101 Laboratoire des technologies innovantes - UR UPJV 3899 [LTI]
ccABED-MERAIM, Farid
178323 Laboratoire d'Etude des Microstructures et de Mécanique des Matériaux [LEM3]
BERVEILLER, Marcel
178323 Laboratoire d'Etude des Microstructures et de Mécanique des Matériaux [LEM3]

URI
http://hdl.handle.net/10985/8875
DOI
10.1016/j.ijplas.2013.02.001
Date
2013
Journal
International Journal of Plasticity

Résumé

In this paper, we performed a strain localization analysis for single crystals and polycrystals, with the specific aim of establishing a link between the microstructure-related parameters and ductility. To this end, advanced large-strain elastic plastic single crystal constitutive modeling is adopted, accounting for the key physical mechanisms that are relevant at the microscale, such as dislocation storage and annihilation. The self-consistent scale-transition scheme is then used to derive the overall constitutive response of polycrystalline aggregates, including the essential microstructural aspects (e.g., initial and induced textures, dislocation density evolution, and softening mechanisms). The resulting constitutive equations for single crystals and polycrystals are coupled with two strain localization criteria: bifurcation theory, which is also related to the loss of ellipticity in the associated boundary value problem, and the strong ellipticity condition, which is presented in full detail along with mathematical links allowing for hierarchical classification in terms of conservativeness. The application of the proposed coupling to single crystals and polycrystals allows the effect of physical microstructural parameters on material ductility to be investigated. Consistent results are found for both single crystals and polycrystals. In addition, forming limit diagrams (FLDs) are constructed for IF-Ti single-phase steels with comparison to the reference results, demonstrating the predictive capability of the proposed approach in investigations of sheet metal formability. The results of the self-consistent scheme are systematically compared to those of the more classical full-constraint Taylor model, both in terms of the impact of microstructural parameters on ductility and in terms of the predicted formability limits and the level of the associated limit strains. Finally, we investigated the impact of strain-path changes on formability through the analysis of the effect of prestrain on the FLDs.

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Documents liés

Visualiser des documents liés par titre, auteur, créateur et sujet.

  • Détermination des diagrammes de perte d’ellipticité par une approche micromécanique 
    Communication avec acte
    FRANZ, Gérald; ccABED-MERAIM, Farid; BEN ZINEB, Tarak; BERVEILLER, Marcel; LEMOINE, Xavier (2006)
    La striction et la rupture au cours de l’opération d’emboutissage figurent parmi les principaux phénomènes limitant les déformations maximales admises par les métaux. Ces phénomènes sont liés à la microstructure des matériaux ...
  • Effect of microstructural and morphological parameters on the formability of BCC metal sheets 
    Article dans une revue avec comité de lecture
    FRANZ, Gérald; ccABED-MERAIM, Farid; BERVEILLER, Marcel (Wiley, 2014)
    The determination of forming limit strains in sheet metal forming industry is a useful way for quantifying metals in terms of formability. However, such forming limit diagrams (FLDs) remain very difficult to obtain ...
  • Strain localization analysis using a multiscale model 
    Communication sans acte
    FRANZ, Gérald; ccABED-MERAIM, Farid; BEN ZINEB, Tarak; LEMOINE, Xavier; BERVEILLER, Marcel (Elsevier, 2007)
    The development of a relevant constitutive model adapted to sheet metal forming simulations requires an accurate description of the most important sources of anisotropy, i.e. the slip processes, the intragranular substructure ...
  • Impact of intragranular substructure parameters on the forming limit diagrams of single-phase B.C.C. steels 
    Article dans une revue avec comité de lecture
    FRANZ, Gérald; ccABED-MERAIM, Farid; BERVEILLER, Marcel (MDPI, 2013)
    An advanced elastic-plastic self-consistent polycrystalline model, accounting for intragranular microstructure development and evolution, is coupled with a bifurcation-based localization criterion and applied to the numerical ...
  • Strain localization analysis using a large strain self-consistent approach 
    Communication sans acte
    FRANZ, Gérald; ccABED-MERAIM, Farid; BEN ZINEB, Tarak; LEMOINE, Xavier; BERVEILLER, Marcel (2007)
    The development of a relevant constitutive model adapted to sheet metal forming simulations requires an accurate description of the most important sources of anisotropy, i.e. the slip processes, the intragranular substructure ...

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