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Characteristics of shell thickness in a slab continuous casting mold 被引量:3

Characteristics of shell thickness in a slab continuous casting mold
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摘要 The key to reduce shell breakout in the continuous casting process is to control shell thickness in the mold. A numerical simulation on the turbulent flow and heat transfer coupled with solidification in the slab mold using the volume of fluid (VOF) model and the enthalpy-porosity scheme was conducted and the emphasis was put upon the flow effect on the shell thickness profiles in longitudinal and transverse directions. The results show that the jet acts a stronger impingement on the shell of narrow face, which causes a zero-increase of shell thickness in a certain range near the impingement point. The thinnest shell on the slab cross-section locates primarily in the center of the narrow face, and secondly near the comer of the wide face. Nozzle optimization can obviously increase the shell thickness and make it more uniform. The key to reduce shell breakout in the continuous casting process is to control shell thickness in the mold. A numerical simulation on the turbulent flow and heat transfer coupled with solidification in the slab mold using the volume of fluid (VOF) model and the enthalpy-porosity scheme was conducted and the emphasis was put upon the flow effect on the shell thickness profiles in longitudinal and transverse directions. The results show that the jet acts a stronger impingement on the shell of narrow face, which causes a zero-increase of shell thickness in a certain range near the impingement point. The thinnest shell on the slab cross-section locates primarily in the center of the narrow face, and secondly near the comer of the wide face. Nozzle optimization can obviously increase the shell thickness and make it more uniform.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2009年第1期25-31,共7页 矿物冶金与材料学报(英文版)
基金 supported by the National Natural Science Foundation of China (No.60672145)
关键词 continuous casting slab mold shell thickness nozzle optimization continuous casting slab mold shell thickness nozzle optimization
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  • 1何俊范,文光华,李刚.薄板坯连铸结晶器内流场的测定[J].重庆大学学报(自然科学版),1994,17(1):95-99. 被引量:3
  • 2文光华,何俊范,李刚.薄板坯连铸结晶器内流体流动特征的研究[J].炼钢,1995,11(5):29-33. 被引量:2
  • 3J Lait, J K Brimacombe, and F Weinberg.Mathematical modeling of heat flow in the continuous casting of steel[J].Ironmaking and Steelmaking, 1974, (2): 90-98.
  • 4Mazumda D A.Consideration about the concept of effective thermal conductivity in continuous casting[J].ISIJ international, 1989, 29(6): 524-528.
  • 5Flint P J.Three-dimensional finite difference model of heat transfer fluid flow and solidification in the continuous slab caster[A].Proc.73rd Steelmaking Conf[C].Iron and Steel Society, Warrendale, PA, 1990.
  • 6Reza Aboutalebi, M(Iran Uni.of Science and Technology) Hasan, M Guthrie, R.I.L.Coupled turbulent flow, heat, and solute transport in continuous casting processes[J].Met.Trans.B, 1995, 26(4): 731-744.
  • 7Yang Hongliang, Zhao Lianggang, Zhang Xingzhong, et al.Mathematical simulation on Coupled Flow, Heat, and Solute Transport in Slab Continuous Casting Process[J].Met.Trans.B, 1998, 29: 1345-1356.
  • 8Noriko KUBO, Jun KUBOTA and Toshio ISHII.Simulation of sliding nozzle gate movements for steel continuous casting [J]. ISIJ International,2001, 41(10):1 221-1 228.
  • 9S. YOKOYA. Control of immersion nozzle outlet flow of swirling flow in continuous casting pattern through the use of swirling flow in continuous casting[J]. ISIJ international, 1994,34(11) :883-888.
  • 10S. YOKOYA. Numerical study of immersion nozzle outlet flow pattern with swirling flow in continuous casting[J]. ISIJ international, 1994,34 (11) : 889-895.

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