Phase-field modeling of eutectic structures on the nanoscale: the effect of anisotropy

被引:23
|
作者
Ratkai, Laszlo [1 ]
Toth, Gyula I. [1 ,2 ]
Kornyei, Laszlo [3 ]
Pusztai, Tamas [1 ]
Granasy, Laszlo [1 ,4 ]
机构
[1] Wigner Res Ctr Phys, POB 49, H-1525 Budapest, Hungary
[2] Univ Bergen, Dept Phys & Technol, Allegaten 55, N-7005 Bergen, Norway
[3] Szechenyi Istvan Univ, Dept Math & Computat Sci, H-9026 Gyor, Hungary
[4] Brunel Univ, Brunel Ctr Adv Solidificat Technol, Uxbridge UB8 3PH, Middx, England
关键词
GROWTH; MICROSTRUCTURE; SOLIDIFICATION; LAMELLAR; ENERGY; ALLOY; INTERFACE; COMPOSITE;
D O I
10.1007/s10853-017-0853-8
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A simple phase-field model is used to address anisotropic eutectic freezing on the nanoscale in two (2D) and three dimensions (3D). Comparing parameter-free simulations with experiments, it is demonstrated that the employed model can be made quantitative for Ag-Cu. Next, we explore the effect of material properties and the conditions of freezing on the eutectic pattern. We find that the anisotropies of kinetic coefficient and the interfacial free energies (solid-liquid and solid-solid), the crystal misorientation relative to pulling, the lateral temperature gradient play essential roles in determining the eutectic pattern. Finally, we explore eutectic morphologies, which form when one of the solid phases are faceted, and investigate cases, in which the kinetic anisotropy for the two solid phases is drastically different.
引用
收藏
页码:5544 / 5558
页数:15
相关论文
共 50 条
  • [1] Phase-field modeling of eutectic structures on the nanoscale: the effect of anisotropy
    László Rátkai
    Gyula I. Tóth
    László Környei
    Tamás Pusztai
    László Gránásy
    Journal of Materials Science, 2017, 52 : 5544 - 5558
  • [2] Phase-field modeling of eutectic solidification
    Kim, SG
    Kim, WT
    Suzuki, T
    Ode, M
    JOURNAL OF CRYSTAL GROWTH, 2004, 261 (01) : 135 - 158
  • [3] Phase-field modeling of eutectic growth
    Drolet, F
    Elder, KR
    Grant, M
    Kosterlitz, JM
    PHYSICAL REVIEW E, 2000, 61 (06): : 6705 - 6720
  • [4] Phase-field modeling of eutectic growth
    Drolet, François
    Elder, K.R.
    Grant, Martin
    Kosterlitz, J.M.
    Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 2000, 61 (06): : 6705 - 6720
  • [5] Phase-field modeling of nanoscale island dynamics
    Hu, Zhengzheng
    Li, Shuwang
    Lowengrub, John
    Wise, Steven
    Voigt, Axel
    TMS 2008 ANNUAL MEETING SUPPLEMENTAL PROCEEDINGS, VOL 1: MATERIALS PROCESSING AND PROPERTIES, 2008, : 111 - +
  • [6] Phase-Field Modeling of Binary Eutectic Alloy Solidification with Convection
    Meyer, Stefan
    Otic, Ivan
    Cheng, Xu
    NUCLEAR SCIENCE AND ENGINEERING, 2016, 184 (03) : 377 - 387
  • [7] Phase-field fracture modeling for large structures
    Lo, Yu-Sheng
    Hughes, Thomas J. R.
    Landis, Chad M.
    JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 2023, 171
  • [8] Concepts of modeling surface energy anisotropy in phase-field approaches
    Tschukin, Oleg
    Silberzahn, Alexander
    Selzer, Michael
    Amos, Prince G. K.
    Schneider, Daniel
    Nestler, Britta
    GEOTHERMAL ENERGY, 2017, 5 (01):
  • [9] Concepts of modeling surface energy anisotropy in phase-field approaches
    Oleg Tschukin
    Alexander Silberzahn
    Michael Selzer
    Prince G. K. Amos
    Daniel Schneider
    Britta Nestler
    Geothermal Energy, 5
  • [10] Phase-field modelling of directional melting of lamellar and rod eutectic structures
    Pusztai, Tamas
    Ratkai, Laszlo
    Horvath, Levente
    Granasy, Laszlo
    ACTA MATERIALIA, 2022, 227