Effects of temperature boundary conditions on equiaxed dendritic growth in phase-field simulations of binary alloy

被引:0
|
作者
于艳梅
杨根仓
赵达文
吕衣礼
机构
[1] China
[2] Northwestern Polytechnical University
[3] Northwestern Polytechnical University Xi′an 710072
[4] State Key Laboratory of Solidification Processing
关键词
phase field approach; temperature boundary condition; thermal diffusion;
D O I
暂无
中图分类号
TG13 [合金学与各种性质合金];
学科分类号
摘要
By the phase field approach, the dendritic growth in binary alloy melt was simulated respectively using two types of temperature boundary conditions, i.e., the constant temperature boundary by which the boundary temperature was fixed at the initial temperature, and Zero Neumann temperature boundary. The influences of the temperature boundary conditions on numerical results are investigated. How to choose appropriate temperature boundary conditions is proposed. The results show that: 1) when the computation region is limited to a changeless size, the Zero Neumann and constant temperature boundary conditions lead to the different dendritic growth behaviors, and the Zero Neumann condition is preferable to the constant temperature condition; 2) when the computation region is enlarged continually with the computational time according to the increasing thermal diffusion scale, the two types of temperature boundary conditions achieve the consistent tip velocities and tip radii, and they both are appropriate choices.
引用
收藏
页码:1063 / 1068
页数:6
相关论文
共 50 条
  • [41] Phase-Field Simulations of Crystal Growth
    Plapp, Mathis
    SELECTED TOPICS ON CRYSTAL GROWTH, 2010, 1270 : 247 - 254
  • [42] Phase-field model of solidification of a binary alloy
    Bi, ZQ
    Sekerka, RF
    PHYSICA A-STATISTICAL MECHANICS AND ITS APPLICATIONS, 1998, 261 (1-2) : 95 - 106
  • [43] Phase-field simulation of Non-Isothermal dendritic growth of NiCu alloy
    Wang Ming-Guang
    Zhao Yu-Hong
    Ren Juan-Na
    Mu Yan-Qing
    Wang Wei
    Yang Wei-Ming
    Li Ai-Hong
    Ge Hong-Hao
    Hou Hua
    ACTA PHYSICA SINICA, 2011, 60 (04)
  • [44] Phase field simulation of the columnar dendritic growth and microsegregation in a binary alloy
    State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi'an 710072, China
    Chin. Phys., 2008, 9 (3516-3522):
  • [45] Phase field simulation of the columnar dendritic growth and microsegregation in a binary alloy
    Li Jun-Jie
    Wang Jin-Cheng
    Yang Gen-Cang
    CHINESE PHYSICS B, 2008, 17 (09) : 3516 - 3522
  • [46] Phase field simulation of the columnar dendritic growth and microsegregation in a binary alloy
    李俊杰
    王锦程
    杨根仓
    Chinese Physics B, 2008, 17 (09) : 3516 - 3522
  • [47] Computer simulation on isothermal dendritic growth process of Al-Cu binary alloy using phase-field method
    Sasajima, Yasushi
    Ichimura, Minoru
    2002, Japan Institute of Light Metals (52): : 58 - 63
  • [48] Phase-field model for dendritic growth in a channel
    Marinozzi, F
    Conti, M
    Marconi, UMB
    PHYSICAL REVIEW E, 1996, 53 (05): : 5039 - 5043
  • [49] Phase-field model of spiral dendritic growth
    Kam, R
    Levine, H
    PHYSICAL REVIEW E, 1996, 54 (03) : 2797 - 2801
  • [50] Phase-field modeling of faceted dendritic growth
    Kim, SG
    Kim, WT
    SOLIDIFICATION PROCESSES AND MICROSTRUCTURES: A SYMPOSIUM IN HONOR OF WILFRIED KURZ, 2004, : 403 - 403