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RH精煉脫碳與夾雜物控制

Decarburization treatment and inclusion control during RH refining

  • 摘要: 為了提高RH精煉處理效率及鋼水的潔凈度,鞍鋼股份有限公司煉鋼總廠針對RH精煉裝置脫碳、氧含量和夾雜物控制等相關工藝進行了研究和改進.通過控制轉爐粗鋼液中的碳氧含量、快速提高RH真空度、增加提升鋼液的驅動氣體氬氣流量、吹氧強制脫碳、延長真空脫碳時間、增大插入管管徑以及改善插入管形狀維護等措施,保證了RH精煉的脫碳效果.通過控制鋼包及澆注過程增碳,保證了成品碳穩定控制在20×10-6以下;同時優化了RH精煉升溫工藝,并開發硅脫氧、鎂脫氧及中間包改質工藝,顯著降低了鋼坯的全氧含量,降低了冷軋夾雜比率,從而確定了合理的RH冶煉超低碳鋼工藝參數及RH精煉搬出后超低碳鋼增碳的控制工藝.

     

    Abstract: In order to improve the RH treatment efficiency and the molten steel cleanliness,some investigations on decarburization processes,oxygen concentration in molten steel and inclusion removal during RH refining were carried out. The decarburization efficiency can be improved through the measures of appropriately controlling the contents of carbon and oxygen during tapping,rapidly increasing the RH vacuum,increasing the lifting gas amount,forcing the decarburization,prolonging the decarburization time,expanding the snorkel diameter and optimizing the snorkel shape. The carbon content of final products is controlled within 20×10-6 by controlling the increment. The oxygen content in as-cast slabs and the off-grade cold-rolled products due to inclusions are decreased greatly by the optimization of RH heating technology and the development of silicon deoxidation,magnesium deoxidation and tundish covering modification technology. Through the above measures,reasonable ultra-low carbon steel production and increment controlling techniques have been established.

     

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