Numerical Simulation of the Fluid Flow, Heat Transfer, and Solidification During the Twin-Roll Continuous Casting of Steel and Aluminum

被引:0
|
作者
Mianguang Xu
Miaoyong Zhu
机构
[1] Northeastern University,School of Materials and Metallurgy
关键词
Mushy Zone; Solidification Front; Roll Surface; Submerged Entry Nozzle; Parabolic Growth;
D O I
暂无
中图分类号
学科分类号
摘要
The commercialization of aluminum twin-roll casting was realized in the early 1950s, while it is still a dream for engineers to produce steel strip by this process. In the present paper, a two-dimensional mathematical model is employed to study the fluid flow, heat transfer, and solidification during the twin-roll casting for both steel and aluminum. The turbulent flow in the pool is examined using the Lam and Bremhorst low-Reynolds-number turbulence model. In order to facilitate the comparison and analysis, a new transformed coordinate system (r, φ) is established. Characteristics of the momentum boundary layer and the solidification front are described. Reasons of the formation of the wedge-shaped zone near the surface of rotating roll are given. In the transformed coordinate system (r, φ), the effect of the centrifugal force induced by the rotating roll is presented using the velocity component in the r direction and the pressure gradient in the r direction. At last, the evaluation of the solidified shell in the pool is analyzed. The results show that the twin-roll casting is a roll-rotating-driven process. The variation of the thickness of the momentum boundary layer can be divided into three stages and its thickness is very uniform at the last stage. Near the roll surface, there exists a wedge-shaped zone induced by the near-roll-surface shear flow that washes the mushy zone front, which increases the depth of the liquid pool and decreases the length of the rolling region. The rotating roll gives rise to the stirring effect to the pool region and the metal is moving away from the roll surface in the positive radial velocity region, and the effect of the centrifugal force becomes weak in the lower part of the pool. At the solidification front, the non-dimensional effective heat transfer coefficient distribution in steel twin-roll casting is larger than that in aluminum twin-roll casting. Considering that the turbulence level is determined by the flow pattern in the pool region, which demonstrates the importance of the geometry of the feeding system in steel twin-roll casting. The evaluation of the solidified shell in aluminum twin-roll casting is a parabolic growth, while in steel twin-roll casting, the parabolic growth only occurs in the lower part of the pool.
引用
收藏
页码:740 / 748
页数:8
相关论文
共 50 条
  • [41] Numerical Simulation of Thermal Field of Work Roll during Top Side-pouring Twin-roll Casting of Steel
    Zhang, Haozhen
    Zhou, Cheng
    Wei, Chunxiao
    ISIJ INTERNATIONAL, 2017, 57 (10) : 1811 - 1820
  • [42] Modelling of Melt Flow and Solidification in the Twin-Roll Strip Casting Process
    Wang, B.
    Zhang, J. -Y
    Fan, J. -F
    Zhao, S. -L
    Ren, S. -B
    Chou, K. -C
    STEEL RESEARCH INTERNATIONAL, 2009, 80 (03) : 218 - 222
  • [43] Numerical simulation of fluid flow and solidification in continuous slab casting mould based on inverse heat transfer calculation
    Chen, R.
    Shen, H. F.
    Liu, B. C.
    IRONMAKING & STEELMAKING, 2011, 38 (07) : 546 - 551
  • [44] Numerical simulation of solidified microstructure of twin-roll continuous casting pure aluminum based on CA-FE method
    Chen, Shou-Dong
    Chen, Jing-Chao
    Lu, Lian-Hao
    Chen, J.-C. (cjingchao@hotmail.com), 1600, Beijing Institute of Aeronautical Materials (BIAM) : 48 - 53
  • [45] Analysis of flow and heat transfer in twin-roll strip casting by finite element method
    Hwang, S.M.
    Kang, Y.H.
    Journal of engineering for industry, 1995, 117 (03): : 304 - 315
  • [46] Modeling of rolling pressure using slab-method and the numerical simulation during twin-roll continuous roll casting process
    Zhu, Zhihua
    Xiao, Wenfeng
    Li, Xiaoqian
    Zhongguo Jixie Gongcheng/China Mechanical Engineering, 2002, 13 (13):
  • [47] ALUMINUM-STEEL CLAD MATERIAL PREPARED BY TWIN-ROLL CASTING
    Krivska, Barbora
    Slapakova, Michaela
    Grydin, Olexander
    Cieslar, Miroslav
    29TH INTERNATIONAL CONFERENCE ON METALLURGY AND MATERIALS (METAL 2020), 2020, : 989 - 993
  • [48] Numerical Simulation of Temperature Field in 6061 Aluminum Alloy Vertical Twin-Roll Casting Process
    Xie, Chaopan
    Liang, Xiaoping
    Wang, Yu
    LIGHT METALS 2020, 2020, : 1063 - 1070
  • [49] Thermal flow simulation of twin-roll casting magnesium alloy
    Xiao-Dong, Hu
    Dong-Ying, Ju
    Hong-Yang, Zhao
    Journal of Shanghai Jiaotong University (Science), 2012, 17 (04) : 479 - 483
  • [50] Thermal Flow Simulation of Twin-Roll Casting Magnesium Alloy
    胡小东
    巨东英
    赵红阳
    Journal of Shanghai Jiaotong University(Science), 2012, 17 (04) : 479 - 483