A Cosserat-phase-field theory of crystal plasticity and grain boundary migration at finite deformation

被引:15
|
作者
Ask, Anna [1 ]
Forest, Samuel [1 ]
Appolaire, Benoit [2 ]
Ammar, Kais [1 ]
机构
[1] PSL Res Univ, CNRS UMR 7633, MAT Ctr Mat, MINES ParisTech, BP 87, F-91003 Evry, France
[2] Univ Lorraine, Inst Jean Lamour, Nancy, France
基金
欧洲研究理事会;
关键词
Cosserat crystal plasticity; Phase-field method; Grain boundary migration; MOTION DRIVEN; MODEL; ENERGY; RECRYSTALLIZATION; BEHAVIOR; STRESS; SOLIDIFICATION; SIMULATION; CURVATURE; INTERFACE;
D O I
10.1007/s00161-018-0727-6
中图分类号
O414.1 [热力学];
学科分类号
摘要
In metallic polycrystals, an important descriptor of the underlying microstructure is the orientation of the crystal lattice of each grain. During thermomechanical processing, the microstructure can be significantly altered through deformation, nucleation of new subgrains and grain boundary migration. Cosserat crystal plasticity provides orientation as a degree of freedom and is therefore a natural choice for the development of a coupled framework to deal with concurrent viscoplasticity and grain growth. In order to take into account grain boundary motion, the Cosserat theory is adapted with inspiration from orientation phase-field models. This allows for the microstructure at a material point to evolve on the one hand due to deformation-induced lattice reorientation and on the other hand due to a sweeping grain boundary. With a proper separation of plastic evolution in the bulk of the grain and in the grain boundary, the model can successfully capture grain boundary migration due to lattice curvature and due to statistically stored dislocations.
引用
收藏
页码:1109 / 1141
页数:33
相关论文
共 50 条
  • [21] Direct Crystal Plasticity Model of Deformation of a Polycrystalline Specimen: Influence of Grain Boundary
    Yants, Anton Yu.
    Tokarev, Artyom A.
    28TH RUSSIAN CONFERENCE ON MATHEMATICAL MODELLING IN NATURAL SCIENCES, 2020, 2216
  • [22] Phase-field crystal simulation of tilt grain boundary evolution under tensile deformation
    Zan Zhang
    Weijin Zhao
    Suleman Muhammad
    Peng Sang
    Ye Shan
    Yongsheng Li
    Applied Physics A, 2023, 129
  • [23] Phase-field crystal simulation of tilt grain boundary evolution under tensile deformation
    Zhang, Zan
    Zhao, Weijin
    Muhammad, Suleman
    Sang, Peng
    Shan, Ye
    Li, Yongsheng
    APPLIED PHYSICS A-MATERIALS SCIENCE & PROCESSING, 2023, 129 (10):
  • [24] A grain boundary formulation for crystal plasticity
    Benedetti, I.
    Gulizzi, V.
    Mallardo, V.
    INTERNATIONAL JOURNAL OF PLASTICITY, 2016, 83 : 202 - 224
  • [25] Effect of Grain Boundary Morphology and MC on Plastic Deformation Behavior of NiCrFeWeld Metal: Crystal Plasticity Finite Element Analysis
    Zhou H.
    Wang P.
    Lu S.
    Cailiao Yanjiu Xuebao/Chinese Journal of Materials Research, 2019, 33 (11): : 801 - 808
  • [26] A finite deformation theory of higher-order gradient crystal plasticity
    Kuroda, Mitsutoshi
    Tvergaard, Viggo
    JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 2008, 56 (08) : 2573 - 2584
  • [27] Pore deformation and grain boundary migration during sintering in porous materials: a phase-field approach
    Lifei Du
    Shaomei Yang
    Xinwen Zhu
    Jing Jiang
    Qian Hui
    Huiling Du
    Journal of Materials Science, 2018, 53 : 9567 - 9577
  • [28] Pore deformation and grain boundary migration during sintering in porous materials: a phase-field approach
    Du, Lifei
    Yang, Shaomei
    Zhu, Xinwen
    Jiang, Jing
    Hui, Qian
    Du, Huiling
    JOURNAL OF MATERIALS SCIENCE, 2018, 53 (13) : 9567 - 9577
  • [29] Phase field crystal study of deformation and plasticity in nanocrystalline materials
    Stefanovic, Peter
    Haataja, Mikko
    Provatas, Nikolas
    PHYSICAL REVIEW E, 2009, 80 (04):
  • [30] Phase field modeling of grain boundary migration with solute drag
    Li, J.
    Wang, J.
    Yang, G.
    ACTA MATERIALIA, 2009, 57 (07) : 2108 - 2120