炼钢 ›› 2026, Vol. 42 ›› Issue (5): 51-59.

• 凝固与浇铸 • 上一篇    下一篇

连铸结晶器钢液流动对凝固坯壳生长的影响研究

姜岩,荣文杰,刘中秋,李宝宽   

  1. 东北大学冶金学院,辽宁 沈阳 110819
  • 出版日期:2026-09-28 发布日期:2026-09-28

Research on the influence of molten steel flow in a continuous casting mold on the growth of solidified shell

JIANG Yan, RONG Wenjie, LIU Zhongqiu, LI Baokuan   

  1. School of Metallurgy, Northeastern University, Shenyang 110819, China
  • Online:2026-09-28 Published:2026-09-28

摘要: 连铸过程中,凝固坯壳的形成与生长直接决定了生产安全与产品质量,而钢液的流动行为则是初始凝固热传输与凝固前沿界面稳定的核心影响因素。建立了连铸结晶器的三维流动-传热-凝固耦合数学模型,系统模拟了吹氩量与拉速变化对结晶器内钢液流场、温度分布及坯壳厚度的影响。结果表明:结晶器内钢液呈双辊流模式,主射流冲击窄面后形成回流,造成不同区域传热强度差异显著;在窄面区域,凝固坯壳厚度与凝固前沿钢液流速存在"先减小、后增大"的变化规律,二者表现出明确的定量关联;而在宽面区域,由于上返流股与宽面中心的强湍流混合作用,坯壳厚度与流速之间未呈现稳定的对应关系。该研究结果可为连铸工艺参数优化与凝固界面稳定性控制提供理论依据。

关键词: 连铸;结晶器;钢液流动;凝固坯壳;温度分布;吹氩量;拉速

Abstract: During the continuous casting process, the formation and growth of the solidified shell directly determine production safety and product quality, while the flow behavior of molten steel is a critical factor influencing heat transfer during initial solidification and the stability of the solidification front. Therefore, a three-dimensional coupled mathematical model of flow, heat transfer, and solidification in the continuous casting mold was established. The effects of argon flow rate and casting speed on the flow field, temperature distribution, and shell thickness within the mold were systematically simulated. The results indicate that the molten steel exhibits a double-roll flow pattern in the mold. The main jet impinges on the narrow face and forms recirculation flows, leading to significant differences in heat transfer intensity across different regions. At the narrow face, the thickness of the solidified shell and the flow velocity of molten steel at the solidification front show a "first decrease, then increase" trend, demonstrating a clear quantitative correlation. In contrast, at the wide face, due to the upper recirculation flow and intense turbulent mixing near the center, no stable correlation is observed between shell thickness and flow velocity. The findings of this study can provide a theoretical basis for optimizing continuous casting parameters and controlling solidification front stability.

Key words: continuous casting; mold; molten steel flow; solidified shell; temperature distribution; argon flow rate; casting speed