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增氮析氮法生成氣泡去除鋼液中顯微非金屬夾雜物

Micro non-metallic inclusion removal from molten steel with gas bubbles generated by the nitrogen absorbing and releasing method

  • 摘要: 為了進一步完善增氮析氮法生成氣泡去除鋼液中顯微非金屬夾雜物技術,研究了真空處理時間、充氮壓力、氣體類型等因素對鋼中全氧和顯微非金屬夾雜物的影響.結果表明:減壓處理過程中,鋼液中非金屬夾雜物可為過飽和氣體氮氣形成氣泡提供非均相形核核心;增氮析氮法可有效地降低鋼中全氧,去除鋼中顯微非金屬夾雜物;真空處理時間越長,鋼中全氧和顯微非金屬夾雜物數量越低,當真空處理時間為30 min時鋼中全氧去除率達到了81.6%,而且全氧質量分數最低達到7×10-6.

     

    Abstract: The effects of vacuum processing time, nitrogen pressure and gas types on the total oxygen and micro non-metallic inclusions in molten steel were investigated to further improve the technology of micro non-metallic inclusion removal from molten steel with gas bubbles generated by the nitrogen absorbing and releasing method. It is found that in the vacuum treatment process, non-metallic inclusions can act as heterogeneous nucleation sites for the evolution of supersaturated nitrogen from molten steel to form bubbles on their surface, the total oxygen decreases, and these micro non-metallic inclusions are effectively removed by the nitrogen absorbing and releasing technology. The longer the vacuum processing time, the lower the content of total oxygen and amount of micro non-metallic inclusions in steel will be, and the removal rate of total oxygen reaches to 81.6% after the steel is vacuum treated 30 min, with the lowest total oxygen content about 7 ×10-6 in steel.

     

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