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Dephosphorization by Double-Slag Process in Converter Steelmaking

机译:转炉炼钢双渣法脱磷

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The double-slag converter steelmaking process can smelt low- and ultra-low-phosphorus steel and reduce lime and dolomite consumption and the amount of final slag simultaneously. Industrial steelmaking tests on a 150-metric ton converter at the Tangsteel Company were carried out to study this principle and its effect on the dephosphorization ratio and material consumption. The results showed that low-temperature stage could be used with a reduced amount of slag in the double-slag steelmaking process to achieve rapid and efficient dephosphorization. A low-basicity slag (~1.5–2.0) in the dephosphorization stage is required in double-slag process. The dephosphorization ratio reached a maximum of 71?% when the slag basicity was 1.7. The end-point phosphorus content after the smelting process was reduced from an average of 0.018 mass% to an average of 0.011 mass% and the dephosphorization efficiency increased by more than 6?%. The dephosphorization slag could be poured out rapidly when the FeO content was controlled at ~16–20 mass% in the double-slag smelting process. Based on key factors such as an efficient dephosphorization and a rapid iron–slag separation, the production efficiency was improved and the smelting cycle increased by only four minutes over the conventional process.
机译:双渣转炉炼钢工艺可以冶炼低磷和超低磷钢,并同时减少石灰和白云石的消耗以及最终炉渣的量。唐钢公司在150公吨的转炉上进行了工业炼钢试验,以研究该原理及其对脱磷率和材料消耗的影响。结果表明,在双渣炼钢过程中可以使用低温阶段,减少渣量,以实现快速有效的脱磷。在双渣工艺中,在脱磷阶段需要低碱度的渣(〜1.5–2.0)。当炉渣碱度为1.7时,脱磷率最高达到71%。熔炼后的终点磷含量从平均0.018质量%降低到平均0.011质量%,脱磷效率提高了6%以上。当在双渣冶炼过程中将FeO含量控制在〜16-20质量%时,可以快速倒出脱磷渣。基于有效的脱磷和铁渣快速分离等关键因素,与传统工艺相比,生产效率得以提高,冶炼周期仅增加了4分钟。

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