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SIMULATION OF THE TWIN ROLL STAINLESS STRIP CASTING PROCESS 被引量:4

SIMULATION OF THE TWIN ROLL STAINLESS STRIP CASTING PROCESS
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摘要 The position of the solidification completed temperature of twin roll stainless strip casting process is very important to the quality of the casting strip. In order to control this position, the solidification completed temperature should be known at first. The present paper first simulated dendritic microsegregation under conditions of twin roll stainless strip casting, and got the relationship between the temperature and the solid fraction of the mush zone. The temperatures such as ZDT (equal to the solidification completed temperature) and LIT (liquid impenetrable temperature), et al., also can be found from this relationship. Then by using the turbulent model, the flow and thermal fields of the pool of the twin roll stainless strip casting and the speed and temperature fields of different casting speeds were given and also explained. The simulation results are coincident with the experimental results. Combined with the results of these simulations, the appropriated casting speed was found. The position of the solidification completed temperature of twin roll stainless strip casting process is very important to the quality of the casting strip. In order to control this position, the solidification completed temperature should be known at first. The present paper first simulated dendritic microsegregation under conditions of twin roll stainless strip casting, and got the relationship between the temperature and the solid fraction of the mush zone. The temperatures such as ZDT (equal to the solidification completed temperature) and LIT (liquid impenetrable temperature), et al., also can be found from this relationship. Then by using the turbulent model, the flow and thermal fields of the pool of the twin roll stainless strip casting and the speed and temperature fields of different casting speeds were given and also explained. The simulation results are coincident with the experimental results. Combined with the results of these simulations, the appropriated casting speed was found.
出处 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2001年第3期199-204,共6页 金属学报(英文版)
基金 This project was sponsored by the National Natural Science Foundation of China (Grant No.59995440)
关键词 Computer simulation Continuous casting Segregation (metallography) Stainless steel Turbulence Computer simulation Continuous casting Segregation (metallography) Stainless steel Turbulence
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参考文献8

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同被引文献30

  • 1MIAO Yu-chuan,ZHANG Xiao-ming,WANG Guo-dong,DI Hong-shuang,LIU Xiang-hua.Coupled Simulation of Flow and Thermal Field of Twin-Roll Strip Casting Process[J].Journal of Iron and Steel Research International,2001,8(2):16-19. 被引量:8
  • 2WANG Bo,ZHANG Jie-yu,FAN Jun-fei,ZHAO Shun-li,FANG Yuan,AN Sheng-li.Water Modeling of Twin-Roll Strip Casting[J].Journal of Iron and Steel Research International,2006,13(1):14-17. 被引量:8
  • 3Bo Wang,Jieyu Zhang,Yin Zhang,Youduo He,Junfei Fan,Yuan Fang,Shengli An.Numerical and physical simulation of a twin-roll strip caster[J].Journal of University of Science and Technology Beijing,2006,13(5):393-400. 被引量:7
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