炼钢

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100 t复吹转炉底吹技术与应用效果

  

  1. (福建省三钢(集团)有限责任公司,福建 三明 36500)
  • 接受日期:1900-01-01 出版日期:2016-10-05

Bottom blowing technique and its application results in 100 t top and bottom combined blown converter

  • Accepted:1900-01-01 Online:2016-10-05

摘要: 通过水模试验确定了福建省三钢(集团)有限责任公司100t复吹转炉底枪采用非对称布置方式,并在此基础上,对开炉、烘炉以及整个炉役的底吹工艺、底枪维护进行了优化,确定了转炉底枪的维护模式及不同阶段和不同炉底厚度的底吹强度,研究了终点温度、炉龄、底吹强度对终点碳氧积[%C]•[%O]的影响。结果表明,炉役前期温度在1 620~1 635℃的情况下,[%C]•[%O]在0.002 63~0.002 72,平均为0.002 67;采用底枪维护工艺后,整个炉役转炉炉底厚度维持在600~750mm,保证了底吹气体的搅拌效果,终点钢水碳氧积在0.002 6~0.003 0;同样底吹效果情况下,随着终点温度的升高,终点[%C]•[%O]随之增大,终点温度每升高10℃,终点[%C]•[%O]增加约0.000 03;增加静搅底吹强度,钢水的碳、磷、硫含量降低,残锰量提高。

关键词: 复吹转炉, 终点碳氧积, 底枪非对称布置, 底吹供气模式, 底枪维护

Abstract: Based on the optimization of bottom tuyere configuration in water model experiment, asymmetric bottom tuyere configuration layout was used in the 100 t combined-blowing converter of Sanming Iron and Steel Co. Then, bottom blowing process and bottom tuyere maintenance were optimized for start-up, heating-up and whole campaign of the converter and maintenance modes of bottom tuyeres of the converter and bottom blowing intensity at different stages and different bottom thickness were determined. Influence of end-point temperature, converter life and bottom blowing intensity on [%C]•[%O] at end-point was investigated. The investigation results showed that [%C]•[%O] at end-point is between 0.002 63—0.002 72, on average 0.002 67, in the earlier stage of the converter campaign and at 1 620—1 635 ℃. Bottom lining thickness of the converter during whole campaign could be kept 600—750 mm, which ensured stirring effect of bottom gas and [%C]•[%O] at end-point was kept 0.002 6—0.003 0. [%C]•[%O] at end-point rose with increase in end-point temperature under the same bottom blowing, about 0.000 03 rising on each 10 ℃ up in temperature. Contents of carbon, phosphorus and sulfur decreased, while content of residual manganese increased, with increase in intensity of pure bottom post-stirring.

Key words: top and bottom combined blown converter, [%C]?[%O] at end-point, asymmetrical bottom tuyere configuration, bottom gas blowing mode, maintenance of bottom tuyeres