• Title of article

    Multicrystalline Materials Analysis Based on Their Microstructure with Emphasis on Predicting Forming Limit Diagrams

  • Author/Authors

    Mohamadnejad Zanjani, Sedigheh Department of Mechanical Engineering - University of Guilan - Rasht, Iran , Basti, Ali Department of Mechanical Engineering - University of Guilan - Rasht, Iran , Ansari, Reza Department of Mechanical Engineering - University of Guilan - Rasht, Iran

  • Pages
    26
  • From page
    1
  • To page
    26
  • Abstract
    Phenomenological methods are more diagnostic tools than a predictor, so multi-crystalline material approaches based on their microstructures have been proposed during the last years. The purpose of this research is to review methods taking into account the effect of microstructures and texture deformation on predicting the behavior of sheet metals. These methods can be categorized into six general groups: Taylor-type models, crystal plasticity finite element methods, strain gradient methods, methods that consider dislocations, self-consistent methods, methods based on fast Fourier transform. This paper attempts to explain and compare these methods that have been used to forecasting forming limits or stress-strain curves.
  • Keywords
    Microstructures , Homogenization methods , Forming Limit , Polycrystalline Materials
  • Journal title
    Iranian Journal of Materials Science and Engineering
  • Serial Year
    2021
  • Record number

    2685663