• Title of article

    Phase-field simulation of recrystallization based on the unified subgrain growth theory

  • Author/Authors

    Suwa، نويسنده , , Yoshihiro and Saito، نويسنده , , Yoshiyuki and Onodera، نويسنده , , Hidehiro، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2008
  • Pages
    10
  • From page
    286
  • To page
    295
  • Abstract
    The effects of the microstructural inhomogeneities created in the deformed state on recrystallization kinetics have been investigated by using phase-field (PF) simulations. Numerical simulations of static recrystallization have been performed in two-dimensional polycrystalline structures by coupling the unified subgrain growth theory with PF methodology. Simple assumptions based on experimental observations have been utilized for preparing the initial microstructures. The following results have been obtained: (1) The transition from continuous to discontinuous recrystallization is successfully reproduced by simulations in which the inter-subgrain misorientation, 〈 θ 〉 , varies and the initial mean subgrain radius, 〈 R 0 〉 , and the total number of pre-existing grains, N , are kept constant. (2) For discontinuous recrystallization, the initiation occurred faster and the termination time reduced with a decrease in 〈 R 0 〉 . (3) We have confirmed that a significant increase in the fraction of high-angle grain boundaries suppressed the discontinuous recrystallization. (4) We have proposed microstructural entropy as an indicator of the discontinuity of recrystallization based on the subgrain size distribution.
  • Keywords
    Bulging , Continuous Recrystallization , Computer simulation , Discontinuous recrystallization , Phase-field modeling
  • Journal title
    Computational Materials Science
  • Serial Year
    2008
  • Journal title
    Computational Materials Science
  • Record number

    1683992