• Title of article

    Micromechanical finite element analysis of metal matrix composites using nonlocal ductile failure models

  • Author/Authors

    Drabek، نويسنده , , Ian T. and Bِhm، نويسنده , , H.J.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    8
  • From page
    29
  • To page
    36
  • Abstract
    Finite element studies of ductile damage in the matrix of particle and fiber reinforced metal matrix composites are presented. Three material models capable of supporting such simulations at the constituent level are discussed within a unified framework. They comprise an element removal technique triggered by a ductile damage indicator as well as versions of the ductile rupture models of Gurson and Rousselier. Nonlocal averaging is employed for reducing the mesh dependence typically displayed by continuum damage methods upon the onset of local softening. Implementation issues specific to the use of nonlocal damage models in a continuum micromechanics framework are discussed. ficacy of the approach in limiting the mesh sensitivity of the predicted behavior of composites subject to matrix damage is demonstrated for a simple three-dimensional matrix-particle configuration. Applications of the method to multi-particle and multi-fiber unit cells subjected to uniaxial tensile loads are presented and effects of microgeometrical parameters on the mechanical response are discussed.
  • Keywords
    Metal Matrix composites , Micromechanics , 83.10.Ff , Nonlocal averaging , Ductile damage models , 83.70.Dk , 46.30.Nz , 02.70.Dh , 11.10.Lm
  • Journal title
    Computational Materials Science
  • Serial Year
    2006
  • Journal title
    Computational Materials Science
  • Record number

    1681705