Physical Simulation of Flow Field in the Round Mould With EMS
WANG Chao1,2,ZHANG Hui 1,2,WANG Ming-lin1,2,PEI Hong-bin3,MA Zhong-wei1,2,ZHAO Pei1
1. National Engineering Research Center of Continuous Casting Technology, Central Iron and Steel Research Institute, Beijing 100081, China 2. The State Key Laboratory of Advanced Iron and Steel Processes and Products, Central Iron and Steel Research Institute, Beijing 100081, China 3. College of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming 650093, Yunnan, China
Abstract:A physical model was established with 1∶1 ratio, taking a 500mm round billet continuous casting mould in a plant as prototype. The effect of EMS on the flow field and inclusion behavior in the mould was studied. Mechanical agitation was applied with a stirring paddle to simulate electromagnetism generated by M-EMS. The results shows that M-EMS makes the molten steel gets a certain tangential velocity that improves the distribution uniformity of steel temperature of stir zone and also promotes the slag melting and moving. The flow at the outlet is turned to be radial from axial direction which helps decrease the impact depth of the steel flow, then the inclusions are better removed and the high temperature zone moves up. The increase extent of the inclusion remove rate is not linear with the increase of stirring strength. The highest of inclusion remove rate was obtained with the stirring strength of 48r/min.
王超 ,张慧 ,王明林 ,裴红彬,马忠伟 ,赵沛. 圆坯结晶器应用电磁搅拌的物理模拟[J]. 钢铁, 2013, 48(9): 26-30.
WANG Chao,,ZHANG Hui ,,WANG Ming-lin,,PEI Hong-bin,MA Zhong-wei,,ZHAO Pei. Physical Simulation of Flow Field in the Round Mould With EMS. Iron and Steel, 2013, 48(9): 26-30.
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