A NUMERICAL AND EXPERIMENTAL-STUDY OF THE SOLIDIFICATION RATE IN A TWIN-BELT CASTER

被引:24
作者
FAROUK, B
APELIAN, D
KIM, YG
机构
[1] WORCESTER POLYTECH INST,WORCESTER,MA 01609
[2] KANG WON IND,DEPT STEELMAKING,POHANG,SOUTH KOREA
来源
METALLURGICAL TRANSACTIONS B-PROCESS METALLURGY | 1992年 / 23卷 / 04期
关键词
D O I
10.1007/BF02649667
中图分类号
TF [冶金工业];
学科分类号
0806 ;
摘要
A numerical and experimental study was carried out to investigate the solidification process in a twin-belt (Hazelett) caster. The numerical model considers a generalized energy equation that is valid for the solid, liquid, and mushy zones in the cast. A k-epsilon-turbulence model is used to calculate the turbulent viscosity in the melt pool. The process variables considered are the belt speed, strip thickness, nozzle width, and heat removal rates at the belt-cast interface. From the computed flow and temperature fields, the local cooling rates in the cast and trajectories of inclusions were computed. The cooling rate calculations were used to predict the dendrite arm spacing in the cast. The inclusion trajectories agree with earlier findings on the distribution of inclusion particles for near horizontally cast surfaces. This article also reports the results of an experimental study of the measurement of heat flux values at the belt-cast interface during the solidification of steel and aluminum on a water-cooled surface. High heat fluxes encountered during the solidification process warranted the use of a custom-made heat flux gage. The heat flux data for the belt surface were used as a boundary condition for the numerical model. Objectives of the measurements also included obtaining an estimate of the heat-transfer coefficient distribution at the water-cooled side of the caster belt.
引用
收藏
页码:477 / 492
页数:16
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