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邯鋼250t轉爐吹煉參數對傳質能力影響的實驗研究

Experimental study on the effect of operating parameters on the mass transfer ability of Hangang 250 t converter

  • 摘要: 渣鋼間傳質速度決定了熔池元素的反應速度(尤其是脫碳和脫磷反應速度),并直接影響元素在渣鋼間分配.本文以邯鋼250 t轉爐為研究對象,利用相似比1∶9建立水模型,考慮供氣流量、槍位和底吹位置因素研究轉爐內傳質能力.結果表明:加大頂吹供氣強度和底吹供氣強度能夠大大提高熔池元素在渣鋼間的分配;渣鋼間傳質系數隨底吹氣體流量降低而明顯降低,建議底吹氣體流量不低于0.06 m3·t-1·min-1;底吹孔數越多,渣鋼間傳質系數越大;底吹流量分配方案優于流量平均分配方案,建議采用.

     

    Abstract: The mass transfer rate between steel and slag determines the reaction rates of elements in a molten bath(especially the reaction rates of desulphurization and dephosphorization),and has direct impact on the distribution ratios of elements between steel and slag. In this article,Hangang 250 t converter was taken as the research object. Factors such as gas flow,lance position and bottom blowing location were taken into consideration to study the mass transfer ability of the convertor by a water model whose similarity ratio was 1:9. The results show that increasing the top-blowing intensity and the bottom-blowing intensity can greatly improve the distribution ratios of elements in the molten bath between steel and slag. The mass transfer coefficient between steel and slag decreases obviously with the drop of bottom-blowing air flow,thus a bottom-blowing air flow not lower than 0.06 m3·t-1·min-1 is suggested. The more the bottom-blowing holes are,the larger the mass transfer coefficient between steel and slag gets. A distribution plan of bottomblowing air flow is presented,which is superior to the equal distribution plan of air flow.

     

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