炼钢 ›› 2025, Vol. 41 ›› Issue (6): 35-43.

• 炉外精炼 • 上一篇    下一篇

LF加废钢降铁耗工艺研究与实践

万金同,刘  钊,程绘兵,熊必勇,肖  波   

  1. 湖南华菱涟源钢铁有限公司,湖南 娄底 417000
  • 出版日期:2025-12-05 发布日期:2025-11-28

Research and practice on scrap steel addition in LF for reducing iron consumption

  • Online:2025-12-05 Published:2025-11-28

摘要: 研究了在长流程炼钢工艺中通过LF精炼工序加入废钢降低铁水单耗的技术路径及其对炼钢工艺的影响。结果表明:废钢加入量增至150 kg/t,铁水单耗可降低10%~15%,吨钢CO2排放量降低11.0%。废钢加入也带来了一系列挑战:废钢每增加50 kg/t,钢水氮质量分数增加(3~5)×10-6,总氧和氢含量也同步上升,钢材中夹杂物数量及夹杂物的评级升高,电耗、电极及钢包耐材消耗显著增加。通过废钢熔化的热力学与动力学研究,建立LF精炼废钢质量标准,提出了预热至500~1 000 ℃的加入方式,结合提高升温效率、控制废钢粒度及强化氩气搅拌,缩短了废钢熔化时间并降低了成分波动,取得了较好的经济效益和社会效益。钙处理与软吹工艺协同改善了夹杂物形态和分布,提升了钢水洁净度,确保了钢材机械性能不受影响。

关键词: 废钢加入量, LF精炼炉, 铁水消耗, 碳排放, 废钢熔化, 夹杂物

Abstract: The technical pathway of scrap steel into ladle during the LF refining process within long-process steelmaking to reduce hot metal consumption and its impact on the steelmaking process were studied. The results show that increasing the amount of scrap steel added to 150 kg/t can reduce the consumption of hot metal by 10% to 15%, while decreasing CO2 emissions per ton of steel by 11.0%. However, the addition of scrap steel also brings a series of challenges. For every 50 kg/t increase in scrap steel, the nitrogen mass fraction of the molten steel increases by (3~5)×10-6, and the total oxygen and hydrogen content also increase synchronously. The number and rating of inclusions in molten steel also increase,and power, electrode, and ladle refractory consumption significantly rise. Through thermodynamic and kinetic studies on scrap steel melting, quality standards of scrap steel for LF were established, and a method of preheating to 500~1 000 ℃ was proposed. By combining the improvement of heating efficiency, control of scrap steel particle size, and strengthening argon stirring, the melting time of scrap steel was shortened and the fluctuation of composition was reduced, the better economic and social benefits had achieved. Based on the synergistic improvement of calcium treatment and soft blowing process, the morphology and distribution of inclusions was improved, the purity of molten steel was enhanced, and the mechanical properties of steel had not been affected.

Key words: addition amount of scrap steel, LF, consumption of hot metal, carbon emission, scrap steel melting, inclusions