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机械搅拌法铁水预脱硅的动力学研究 被引量:1

DYNAMICS RESEARCH IN MECHANICAL STIRRING PRE- DESILICONIZATION OF HOT METAL
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摘要 在实验室进行了模拟铁水预处理机械搅拌法脱硅的动力学试验,考察了铁水温度、搅拌方法、初始硅含量、脱硅渣碱度等因素对脱硅反应速率的影响.试验表明:铁水温度对脱硅速率影响较小;机械搅拌可显著提高脱硅速率;脱硅反应初期的限制环节是硅在铁水侧的传质,当渣中FeO含量降低到一定程度后,FeO在渣相侧的传质成为脱硅过程的限制环节,或与硅在铁水侧的传质共同控制速度;脱硅渣碱度在0.32 ~0.65变化对脱硅速率无显著影响. The simulation dynamics test is done in laboratory for pre - treating desiliconization of hot metal with mechanical stirring method. The influence is viewed of hot metal temperature, stirring method, prelimi- nary silicon content and basicity of desiliconization slag on desiliconization reduction speed. It is showed in experiment that for the desiliconization speed, the hot metal temperature has small influence; whereas the me- chanical stirring can largely speed up it; the limit for desiliconization in reduction beginning is the mass trans- fer of silicon at side of hot metal, but when the content of FeO in slag reduces to some degree it becomes the mass transfer of FeO at side of slag phase ; or the above two transfers combined together to control the speed ; the change of the basicity of desiliconization slag between 0.32 to 0.65 has no influence on the desiliconiza- tion speed.
出处 《河北冶金》 2014年第2期12-16,共5页 Hebei Metallurgy
关键词 铁水预处理 机械搅拌法 脱硅 动力学 研究 pre - treating of hot metal mechanical stirring method desiliconization dynamics research
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  • 1Saxena S K.用氧气炼钢大批量生产优质钢水所用铁水脱硫技术的最新动向.Metal+Metallurgy China’1997.Rossborough制造公司和Hoogovens技术服务公司[M].中国北京,1997,5.. 被引量:1
  • 2杨世山.全面铁水预处理工艺和深度脱磷的研究:硕士学位论文[M].北京:北京科技大学,1987,5.9-14. 被引量:1
  • 3[1]Nippon Steel' s SMP and ORP Processes, Kobe Steel' s OLIPS Process, Kawasaki' s Pretreatment of BF Output Improves steel refining, Sumitomo's SARP Process. Steel Times International. March 1985, 9(1): 38, 41, 42, 45, 46,48. 被引量:1
  • 4[2]Sasaki K. A Newly Developed Hot Metal Treatment Has Changed the Ideal of Mass Production of Pure Steel. Steelmaking Conference Proceedings. ISS-AIME, 1983, 66: 285~291. 被引量:1
  • 5[4]Kurose Y. The Economic Effects of Pretreating All Hot Metal. Steelmaking Conference Proceedings. ISS- AIME,1989, 72,2~5,277~279. 被引量:1
  • 6[5]Suitoh M. Total Hot Metal Pretreatment System at Kawasaki Steel. Kawasaki Steel Technical Report. 1991, 24:16~24. 被引量:1
  • 7[6]Progress of the Iron and Steel Technologies in Japan in the Past Decade- Part 3. Steelmaking - 3.1.1 Overview, 3.1.2Refining Technologies, 3.3.1 Hot Metal Pretreatment, 3.3.2 Converter Processes, 3.3.5 Ladle Refining Processes.Trans. Iron Steel Inst. July 1985, 25(7): 627~637, 652~669, 676~684. 被引量:1
  • 8[7]Yoshida K. Development of New Hot Metal Dephosphorisation Process at Kashima Steel Works. Steel Times International. 1990, 14(3): 20, 22. 被引量:1
  • 9[8]Matsuo T. Development of New Hot Metal Dephosphorization Process in Top and Bottom Blowing Converter. Steelmaking Conference Proceedings. ISS- AIME, 1990, 73: 115~121. 被引量:1
  • 10[9]Hajika K, Aoki M, Nitta M. Quality Improvement and Energy Saving by A Newly - Developed Steelmaking Process.Steelmaking Conference Proceedings. 1989, 72: 325~330. 被引量:1

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