炼钢 ›› 2015, Vol. 31 ›› Issue (6): 23-.

• 试验研究 • 上一篇    下一篇

连铸工艺参数对大圆坯凝固组织影响的数学模拟

  

  1. 1.北京科技大学 冶金工程研究院,北京 100083;2.北满特殊钢有限公司,黑龙江 齐齐哈尔 161041
  • 接受日期:1900-01-01 出版日期:2015-12-05

Simulation on the influence of continuous casting process parameter on solidification structure of large round billet

  • Accepted:1900-01-01 Online:2015-12-05

摘要: 基于ProCAST软件研究了中间包钢水过热度、连铸坯拉坯速度、连铸机二冷强度等连铸工艺参数对大断面圆坯凝固组织的影响规律。研究结果表明:结晶器电磁搅拌电流为300 A、频率为3 Hz条件下,随着过热度的降低,连铸坯中心等轴晶率显著增加,过热度由49 ℃降至29 ℃时,过热度每降低10℃,铸坯中心等轴晶率增大4%左右;拉速由0.16~0.20 m/min每增加0.02 m/min,二冷强度由标准水量的1.5~0.5倍每降低0.5倍,连铸坯中心等轴晶率有所增加但均不显著,均为1.5%左右。降低过热度能够显著细化凝固组织晶粒,而改变拉速和二冷强度对于细化凝固组织晶粒作用不明显。对于调整连铸工艺参数而言,提高连铸坯中心等轴晶率和细化凝固组织晶粒的最有效办法是降低中间包钢水过热度。

关键词: 35钢, 大断面圆坯, 凝固组织, ProCAST, 数学模拟

Abstract: A mathematical simulation was conducted using the ProCAST software for the solidification process of the large round billets. The effect of liquid steel superheat in tundish, casting speed and secondary cooling intensity on solidification of continuous casting billet were studied. The results showed that under the condition of mold electromagnetic stirring (EMES) with 300 A current and 3 Hz frequency, the equiaxial crystal ratio of casting billet increased significantly with the reduce of the degree of superheat, from 49 ℃ to 29 ℃, and the equiaxial crystal ratio increases by 4 % roughly for every 10 ℃ drop in the superheat. The equiaxial crystal ratio of casting billet increased insignificantly when casting speed increased for every 0.02 m/min up from 0.16 m/min to 0.20 m/min and secondary cooling intensity reduced for every 0.5 times from 1.5 times to 0.5 times of the standard water flow rate, only roughly 1.5 %. The grain sizes of solidification structures were refined significantly with decrease in superheat, but the changes of the casting speed and secondary cooling intensity had little effects on it. So reducing the superheat of the steel in tundish is the most effective way to improve the equiaxial crystal ratio and refine the grain size of continuous casting billet among the continuous casting process parameters.

Key words: 35 steel, large round billet, solidification structure, ProCAST, mathematical simulation