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  • 王謙, 何生平. 低碳含鋁鋼LF爐精煉工藝及精煉渣的優化[J]. 工程科學學報, 2007, 29(S1): 14-17. DOI: 10.13374/j.issn1001-053x.2007.s1.004
    引用本文: 王謙, 何生平. 低碳含鋁鋼LF爐精煉工藝及精煉渣的優化[J]. 工程科學學報, 2007, 29(S1): 14-17. DOI: 10.13374/j.issn1001-053x.2007.s1.004
    WANG Qian, HE Shengping. Optimization of LF refining process and slag for low carbon aluminum containing steel[J]. Chinese Journal of Engineering, 2007, 29(S1): 14-17. DOI: 10.13374/j.issn1001-053x.2007.s1.004
    Citation: WANG Qian, HE Shengping. Optimization of LF refining process and slag for low carbon aluminum containing steel[J]. Chinese Journal of Engineering, 2007, 29(S1): 14-17. DOI: 10.13374/j.issn1001-053x.2007.s1.004

    低碳含鋁鋼LF爐精煉工藝及精煉渣的優化

    Optimization of LF refining process and slag for low carbon aluminum containing steel

    • 摘要: 針對低碳含鋁鋼轉爐生產的粗鋼水O含量高和鋼水C低的特點,提出了采用CaO-Al2O3的LF爐精煉渣系.為兼顧脫硫和吸收同化夾雜的需求,可選取(質量分數)CaO=55%~60%,SiO2=4%-7%,Al2O3=28%~32%,MgO=4%~8%,CaO/Al2O3=1.7~1.9作為LF爐精煉終渣組成.出鋼過程中采用渣洗工藝向鋼包內加入大部分精煉渣、出鋼末期對轉爐下渣還原處理的造渣模式,結合足夠的軟吹Ar時間,對16MnR進行精煉,得到了脫硫率為61.8%,鑄坯TO為22×10-6,鑄坯中大型夾雜總量為15.68mg/10kg鋼的良好冶金效果.

       

      Abstract: Ladle furnace (LF) refining slag plays an important role in desulfurizing and inclusion removal from steel. According to the highO content and lowC in the initial liquid steel from BOF (basic oxygen fur-nace) furnace, the CaO-Al2O3 slag system was suggested to use in the LF refining of low carbon aluminum con-taining steel. To enhance the desulfurizing and inclusion absorption for the liquid steel, the compositions of the final refining slag in LF can be chosen as:CaO=55%-60%, SiO2=4%-7%, Al2O3=28%-32%, MgO=4%-8% (mass fraction), and CaO/Al2O3=1.7-1.9. During the tapping, most of the refining slag was added into the ladle to real-ize slag filtration. The oxidizing slag tapped into the ladle from BOF was reduced in the end of tapping. And enough time was kept to killing the liquid steel with Ar soft blowing. By all of above methods, the steel grade of 16MnR was refined with a better result as:the desulfurizing ratio was 61.8%, the total oxygen content TO in slab decreased to 22×10-6, and the macro inclusions (≥ 50 μm) in slab also dropped down to 15.68 mg/10 kg steel.

       

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