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  • 顏坤, 程樹森, 張鵬. RH脫氧過程Al塊運動及其熔化[J]. 工程科學學報, 2016, 38(S1): 20-26. DOI: 10.13374/j.issn2095-9389.2016.s1.004
    引用本文: 顏坤, 程樹森, 張鵬. RH脫氧過程Al塊運動及其熔化[J]. 工程科學學報, 2016, 38(S1): 20-26. DOI: 10.13374/j.issn2095-9389.2016.s1.004
    YAN Kun, CHENG Shu-sen, ZHANG Peng. Motion and melting of AL block during the RH deoxidation process[J]. Chinese Journal of Engineering, 2016, 38(S1): 20-26. DOI: 10.13374/j.issn2095-9389.2016.s1.004
    Citation: YAN Kun, CHENG Shu-sen, ZHANG Peng. Motion and melting of AL block during the RH deoxidation process[J]. Chinese Journal of Engineering, 2016, 38(S1): 20-26. DOI: 10.13374/j.issn2095-9389.2016.s1.004

    RH脫氧過程Al塊運動及其熔化

    Motion and melting of AL block during the RH deoxidation process

    • 摘要: 為了研究將Al塊輸運至鋼渣界面以抑制澆注過程爐渣向鋼液傳氧的可行性,建立了Al塊運動及其傳熱的數學模型,將Al塊運動與其傳熱進行耦合求解,據此模型分析了RH循環流量和Al塊初始半徑對Al塊運動及熔化的影響.結果表明Al塊的熔化有兩種路線,兩種熔化路線的差異是由Al塊的內部熔化引起的.根據分析結果,欲將Al輸送至鋼渣界面,必須保證RH的循環流量在100 t·min-1以上,Al塊的原始半徑需大于10 mm.

       

      Abstract: To investigate the feasibility of the transport of aluminum block to the slag-steel interface to suppress the oxygen trans-fer from slag to steel in the casting process, a mathematical model for the motion and melting of aluminum block was developed and it was solved in a coupled way. The effects of parameters such as the RH circulation flow rate and the initial size of aluminum block on the motion and melting of aluminum block were investigated based on this model. The results suggest that there are two melting routes for aluminum block. The difference between them lies on the internal melting of aluminum block. According to the results, for the sake of transporting the aluminum block to the slag-steel interface, the circulation flow rate should be larger than 100 t·min-1 and the origi-nal radius of aluminum block should be at least 10 mm.

       

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