炼钢 ›› 2025, Vol. 41 ›› Issue (6): 56-66.

• 凝固与浇铸 • 上一篇    下一篇

四流方坯中间包堵流/少流浇铸时钢水流动行为研究

贾星宇1,唐海燕1,靳伦安1,王  飞1,邓  伟2,邱军华2   

  1. 1.北京科技大学 冶金与生态工程学院,北京 100083;
    2.南京钢铁股份有限公司,江苏 南京 210000
  • 出版日期:2025-12-05 发布日期:2025-11-28

Study on the flow behavior of molten steel in four-strand billet tundish during blocking flow/fewer strands casting

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

摘要: 在钢水连铸过程中,水口絮流、设备故障或钢水供应不足等问题均可能导致中间包进行堵流或少流浇铸。以某钢厂四流方坯T型中间包为研究对象,采用物理模拟与数值模拟相结合的方法,研究了堵流前后中间包流场、温度场以及夹杂物去除率的变化规律。通过分析,确定了针对该中间包较优的堵流方案,并提出了通过提高拉速来优化水口堵塞后钢液流动一致性的措施。研究结果表明,堵流操作会导致钢液流动状态发生显著变化,表现为中间包浇铸区平均温度下降、各流一致性变差。其中堵中部水口比边部水口对流场的影响更小,此时中间包死区比例为15%、浇铸区最大温差3 ℃,与正常浇铸方案相比,各粒径夹杂物的去除率均有所提高。此外,提高被堵侧水口拉速可以加快钢液流动,从而降低死区比例、缩小滞止时间标准差,同时使温度分布更加均匀。研究可为同类四流T型中间包的堵流/少流操作提供参考。

关键词: 中间包, 堵流, 提高拉速, 流场, 温度场, 夹杂物

Abstract: During the continuous casting of molten steel, issues such as nozzle clogging, equipment failures, or insufficient steel supply may necessitate blocking flow or fewer strands casting operations in the tundish. Taking a certain steel plant's four-strand T-shaped billet tundish as the research object, a combination of physical simulation and numerical simulation was used to analyze variations in flow field, temperature distribution, and inclusion removal efficiency before and after blockage. Through systematic analysis, an optimized blockage strategy tailored to this tundish was identified, along with measures to enhance flow consistency post-clogging by increasing casting speed. The results demonstrate that blockage operations induce significant alterations in molten steel flow dynamics, characterized by a decline in average temperature within the casting zone and compromised flow uniformity. Notably, blocking the central nozzle exhibits a lesser impact on the flow field compared to blocking side nozzles. Under this condition, the tundish exhibits a dead zone proportion of 15%, a maximum temperature difference of 3 ℃ in the casting zone, and improved removal rates for inclusions across all particle sizes relative to normal casting operations. Furthermore, elevating the casting speed on the blocked side accelerates steel flow, reducing dead zone proportion, narrowing the standard deviation of stagnation time, and promoting more uniform temperature distribution. This research offers actionable insights for optimizing blockage/reduced-flow operations in similar four-strand T-shaped tundishes.

Key words: tundish, blocking flow, increase of casting speed, flow field, temperature field, inclusions