Commercial Pilot Production of Effect of Alkali Metal Oxides on Dephosphorization Results of Converter Smelting Ultra-Low Phosphorous Steel
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Commercial Pilot Production of Effect of Alkali Metal Oxides on Dephosphorization Results of Converter Smelting Ultra-Low Phosphorous Steel
Special SteelVol. 36, Issue 5, Pages: 27-31(2015)
作者机构:
1. 钢铁研究总院连铸技术国家工程研究中心,北京,100081
2. 河北钢铁集团承钢公司,承德,076001
3. 新余钢铁股份有限公司第二炼钢厂,新余,338001
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DOI:
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Online First:15 August 2022,
Published:15 August 2015
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秦哲, 张明博, 廖建军, et al. Commercial Pilot Production of Effect of Alkali Metal Oxides on Dephosphorization Results of Converter Smelting Ultra-Low Phosphorous Steel[J]. Special Steel, 2015, 36(5): 27-31.
DOI:
秦哲, 张明博, 廖建军, et al. Commercial Pilot Production of Effect of Alkali Metal Oxides on Dephosphorization Results of Converter Smelting Ultra-Low Phosphorous Steel[J]. Special Steel, 2015, 36(5): 27-31.DOI:
Commercial Pilot Production of Effect of Alkali Metal Oxides on Dephosphorization Results of Converter Smelting Ultra-Low Phosphorous Steel
By testing in a 15 kg vacuum induction furnace it is obtained that there is obvious dephosphorization effect by respectively adding Li
2
O
CaF
2
Na
2
O and K
2
O in CaO base dephosphorization slag series
of them the CaO base slag containing 5% 10% Li
2
O has optimum dephosphorization results. The results of commercial pilot production of 120 t top and bottom combined blowing converter with double slag operation show that as compared with the earlier stage slag without adding lepidolite (/% : 34.58 kg/t lime
5.41 kg/t dolomite and 3.13 kg/t si
nter) in earlier stage of dephosphorization based on adding 31.46 kg/t lime
3.70 kg/t dolomite and 0.70 kg/t sinter
with adding 13.88 kg/t lepidolite mineral (/% : 56.41SiO
2
3.80FeO
4.50Na
2
O
4.17K
2
O
3. 18Li
2
O) the oxidizability of converter end slag is lower
the average dephosphorization rate and phosphorus equilibrium distribution coefficient of converter semi-steel is respectively 1.67 time and 2.81 times that without adding lepidolite
the converter end dephosphorization rate and phosphorus equilibrium distribution coefficient is respectively 1.02 times and 1.47 times that without adding lepidolite
as compared with nonadding lepidolite the converter blowing end [P
]
decreases from 0.009%-0.011% to 0.005%-0.006% to meet the requirement of ultra-low phosphorus steel.