• Title of article

    Cohesive modeling of dynamic fracture in functionally graded materials

  • Author/Authors

    SOMA SEKHAR V. KANDULA، نويسنده , , Jorge Abanto-Bueno، نويسنده , , PHILIPPE H. GEUBELLE and JOHN LAMBROS، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2005
  • Pages
    22
  • From page
    275
  • To page
    296
  • Abstract
    The dynamic fracture of functionally graded materials (FGMs) is modeled using an explicit cohesive volumetric finite element scheme that incorporates spatially varying constitutive and failure properties. The cohesive element response is described by a rate-independent bilinear cohesive failure model between the cohesive traction acting along the cohesive zone and the associated crack opening displacement. A detailed convergence analysis is conducted to quantify the effect of the material gradient on the ability of the numerical scheme to capture elastodynamic wave propagation. To validate the numerical scheme, we simulate dynamic fracture experiments performed on model FGM compact tension specimens made of a polyester resin with varying amounts of plasticizer. The cohesive finite element scheme is then used in a parametric study of mode I dynamic failure of a Ti/TiB FGM, with special emphasis on the effect of the material gradient on the initiation, propagation and arrest of the crack
  • Keywords
    wave propagation. , Cohesive modeling , Dynamic fracture , Fracture toughness , Functionally graded materials
  • Journal title
    International Journal of Fracture
  • Serial Year
    2005
  • Journal title
    International Journal of Fracture
  • Record number

    828277