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轉爐冶煉CaO-SiO2-FeO渣系中磷的行為

Phosphorus behavior in CaO-SiO2-FeO slag during converter melting process

  • 摘要: 回歸推導出渣系中磷酸鹽容量對數與爐渣光學堿度和溫度的關系表達式,通過回歸公式繪制出CaO-SiO2-FeO(10%MgO)渣系的等磷酸鹽容量圖,分析了轉爐終渣、終點成分及溫度對鋼中磷含量的影響情況.當熔渣磷酸鹽容量一定時,隨著轉爐終點碳含量降低,渣/鋼間磷分配比增加;相同終點碳含量時,隨著熔渣磷酸鹽容量增加,渣/鋼間磷分配比增加;轉爐終點碳質量分數控制在0.03%~0.04%,爐渣堿度大于3.5,渣中FeO質量分數低于18%,渣中P2O5質量分數低于2%,有利于獲得終點磷質量分數在0.008%以內的鋼水.

     

    Abstract: An expression was regressed to describe the relation of phosphate capacity in slag to slag's optical basicity and temperature. An iso-phosphate capacity graph of the CaO-SiO2-FeO (10% MgO) slag system was depicted by the regression expression. The effect of converter end-point slag, end-point composition and temperature on the phosphorus content in steel was analyzed. When the phosphate capacity in slag is constant, the distribution ratio of phosphorus between slag and steel increases with the converter final carbon content decreasing; but at a constant final carbon content, with the increase of phosphate capacity in slag, the distribution ratio of phosphorus between slag and steel increases. It is suggested that the final carbon content is controlled between 0.03% and 0.04%, the slag basicity is more than 3.5, the FeO content in slag is less than 18%, and the P2O5 content in slag is less than 2%, which are favorable for producing liquid steel with the final phosphorus content less than 0.008%.

     

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