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RH精煉鋼中全氧量變化與操作改進

Variation of total oxygen in RH refining and operation improvement

  • 摘要: 為了使鋼中全氧量控制在一個適當的水平,在武鋼煉鋼總廠RH真空脫氣裝置對低碳、超低碳鋼進行了脫氧凈化試驗.結果表明,影響全氧去除的因素按作用高低依次是出鋼溶解氧水平,溶解氧與鋼包渣的交互作用,鋼包渣,和真空處理凈化時間.通過改進工藝生產了全氧量 ≤ 10×10-6,非金屬夾雜物尺寸<10μm的清潔鋼水,建立了一個鋼包內鋼水全氧濃度隨時間變化的新方程,該方程考慮了全氧的表觀平衡含量及環流、擴散傳質對去除氧化物夾雜速率的影響.

     

    Abstract: In order to control the total oxygen at an appropriate level, investigations on deoxidation and purification were carried out in ultra-low carbon and low carbon steels by means of the RH vacuum degasser in the General Steelmaking Mill, Wuhan Iron & Steel Co. Ltd. The results show that influential factors of total oxygen removal in the order from main to subordinate are the free oxygen level in the tapping molten steel, interaction between the free oxygen and slag, slag in the ladle, and the vacuum treatment time, respectively. The clean molten steel with a total oxygen content of 10×10-6 and nonmetallic inclusions less than 10 μm in size was produced by the optimizing process. A new equation involving the change of total oxygen concentration via the ladle with time is approved, which considers the influences of apparent oxygen equilibrium content, circulation, and diffusion mass transfer on the removal rate of oxide inclusions.

     

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