• Title of article

    Interatomic potentials and the simulation of fracture: C15 NbCr2

  • Author/Authors

    Frohmut R?sch · Hans-Rainer Trebin · Peter Gumbsch، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    10
  • From page
    517
  • To page
    526
  • Abstract
    The discrete nature of solids and the interatomic interactions strongly influence crack propagation. Lattice trapping results in stable cracks above and below the critical Griffith load. Local atomic arrangements near the crack front define fracture behaviour. The analysis of these processes on an atomic scale helps to understand principle mechanisms and their consequences, which also have to be incorporated in more coarsegrained descriptions to get reliable results. Largescale molecular dynamics simulations of fracture on the atomic level can supply information not accessible to experiment. But to simulate a specific material reasonable effective interatomic potentials are needed. In this paper, we report on the fitting and validation of potentials specifically generated for the fracture of C15 NbCr2. Results are compared to those derived with potentials for the elements from the literature. The comparisonindicates that interactions fitted to elemental metals are not sufficient to determine alloy properties.
  • Keywords
    Fracture · Crack propagation ·Molecular dynamics simulation · Embedded atommethod · Force matching · Ab initio · Lavesphase · C15 · NbCr2 · Complex metallic alloys ·Lattice trapping
  • Journal title
    International Journal of Fracture
  • Serial Year
    2006
  • Journal title
    International Journal of Fracture
  • Record number

    828402