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VOLUMETRIC MASS TRANSFER COEFFICIENT BETWEEN SLAG AND METAL IN COMBINED BLOWING CONVERTER 被引量:3

VOLUMETRIC MASS TRANSFER COEFFICIENT BETWEEN SLAG AND METAL IN COMBINED BLOWING CONVERTER
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摘要 The effects of operation parameters of combined blowing converter on the volumetric mass transfer coefficient between slag and steel are studied with a cold model with water simulating steel, oil simulating slag and benzoic acid as the transferred substance between water and oil. The results show that, with lance level of 2.1m and the top blowing rate of 25000Nm3/h, the volumetric mass transfer coefficient changes most significantly when the bottom blowing rate ranges from 384 to 540Nm3/h. The volumetric mass transfer coefficient reaches its maximum when the lance level is 2.1m, the top blowing rates is 30000Nm3/h, and the bottom blowing rate is 384Nm3/h with tuyeres located symmetrically at 0.66D of the converter bottom. The effects of operation parameters of combined blowing converter on the volumetric mass transfer coefficient between slag and steel are studied with a cold model with water simulating steel, oil simulating slag and benzoic acid as the transferred substance between water and oil. The results show that, with lance level of 2.1m and the top blowing rate of 25000Nm3/h, the volumetric mass transfer coefficient changes most significantly when the bottom blowing rate ranges from 384 to 540Nm3/h. The volumetric mass transfer coefficient reaches its maximum when the lance level is 2.1m, the top blowing rates is 30000Nm3/h, and the bottom blowing rate is 384Nm3/h with tuyeres located symmetrically at 0.66D of the converter bottom.
出处 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2005年第2期91-95,共5页 金属学报(英文版)
关键词 combined blowing converter cold modeling volumetric mass transfer coefficient operational parameter combined blowing converter, cold modeling, volumetric mass transfer coefficient, operational parameter
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参考文献2

  • 1H.S. Zhang and Z.Q. Xiao, Iron and Steel 22(9) (1987) 21 (in Chinese).
  • 2L. Liu, Z. Guo and Z. Li, Journal of Northeastern University (Natural Science) 19 (1998) 85 (in Chinese).

同被引文献13

  • 1刘浏.复吹转炉强化冶炼工艺研究[J].钢铁,2004,39(9):17-23. 被引量:19
  • 2王国华.太钢第二炼钢厂顶底复吹转炉工艺生产实践[J].山西冶金,2006,29(2):51-53. 被引量:2
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  • 7Paul S, Ghosh D N. Model Study of Mixing and Mass Transfer Rates of Slag-Metal in Top and Bottom Blown Converters[J]. Metallurgical Transactions, 1986, 17B(3): 461.
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  • 10杨文远,王明林,崔淑贤,干勇.炉渣的岩相研究在转炉炼钢中的应用[J].钢铁研究学报,2007,19(12):10-15. 被引量:19

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