炼钢 ›› 2020, Vol. 36 ›› Issue (6): 14-18.

• 转炉及电炉冶炼 • 上一篇    下一篇

快节奏生产模式下低温、低硅铁水脱磷优化实践

刘  威,邓南阳,胡文华,田友朋,况贤高,赵  滨   

  1. (马鞍山钢铁股份有限公司 长材事业部,安徽 马鞍山 243000)
  • 出版日期:2020-12-05 发布日期:2020-12-04

Optimization of dephosphorization of low temperature and low silicon hot metal under fast-paced production mode

  • Online:2020-12-05 Published:2020-12-04

摘要: 为更好地研究低温、低硅铁水的脱磷规律,在马鞍山钢铁股份有限公司70 t转炉现场进行试验,发现前期成渣速度较慢、中期炉渣返干导致脱磷反应受限,一倒脱磷率较低。现场优化通过改善加料方式及枪位控制,使得吹炼3 min时渣中w(FeO)由10.46 %提高至24.70 %,加强了脱磷反应,达到全程化渣及脱磷的目的。优化后的低温、低硅铁水冶炼使得现场一倒脱磷率由72.1%提高至86.6 %,一倒出钢率由68.4 %提高至74.3 %,钢铁料消耗和氧枪枪龄等技术指标也得到改善,为现场的快节奏生产和节能降本提供了支持。


关键词: 低温, 低硅铁水, 脱磷, 物相, 黏度

Abstract: The dephosphorization rule of low temperature and low silicon molten iron was better studied in Masteel 70 t converter site, the limited dephosphorization reaction and low dephosphorization rate due to the slow slag formation in the early stage and the drying back in the medium stage. The FeO mass fraction in  slag was increased from 10.46 % to 24.70 % at the third minute by improving the feeding method and lance position control, the dephosphorization reaction was strengthened to achieve the purpose of slagging and dephosphorization.The dephosphorization rate at first turning down  increased from 72.1 % to 86.6 %,and tapping rate at first turning down  increased from 68.4 % to 74.3 % by the optimization, and the technical indicators such as steel consumption and oxygen lance age had been improved which provided support for fast-paced production and energy saving in the field.


Key words: low temperature, low silicon molten iron, dephosphorization, phase, viscosity