• Title of article

    Coupled effects of grain size distributions and crystallographic textures on the plastic behaviour of IF steels

  • Author/Authors

    Nicolas Nicaise، نويسنده , , Stephane Berbenni، نويسنده , , Francis Wagner، نويسنده , , Marcel Berveiller، نويسنده , , Xavier Lemoine، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    18
  • From page
    232
  • To page
    249
  • Abstract
    Micro–macro scale transition theories were developed to model the inelastic behaviour of polycrystals starting from the local behaviour of the grains. The anisotropy of the plastic behaviour of polycrystalline metals was essentially explained by taking into account the crystallographic textures. Issues like plastic heterogeneities due to grain size dispersion, involving the Hall–Petch mechanism at the grain scale, were often not taken into account, and, only the role of a mean grain size was investigated in the literature. Here, both sources of plastic heterogeneities are studied using: (i) experimental data from EBSD measurements and tensile tests, and, (ii) a self-consistent model devoted to elastic–viscoplastic heterogeneous materials. The results of the model are applied to two different industrial IF steels with similar global orientation distributions functions but different mean grain sizes and grain size distributions. The coupled role of grain size distributions and crystallographic textures on the overall tensile behaviour, local stresses and strains, stored energy and overall plastic anisotropy (Lankford coefficients) is deeply analyzed by considering different other possible correlations between crystallographic orientations and grain sizes from the measured data.
  • Keywords
    B. Elastic–viscoplastic material , B. metallic material , C. Self-consistent scheme , A. Strengthening mechanisms , A. Microstructures
  • Journal title
    International Journal of Plasticity
  • Serial Year
    2011
  • Journal title
    International Journal of Plasticity
  • Record number

    1254931