炼钢 ›› 2026, Vol. 42 ›› Issue (4): 49-56.

• 炉外精炼 • 上一篇    下一篇

钙处理对MRT2.5钢洁净度及夹杂物的影响

方朝权1,成日金1,霍立桥2,武献民2,邰军凯2,张  华1   

  1. 1.武汉科技大学 钢铁冶金及资源利用省部共建教育部重点实验室,湖北 武汉 430081;
    2.河北省热轧板带钢技术创新中心,河北 邢台 054009
  • 出版日期:2026-08-05 发布日期:2026-07-21

Effects of calcium treatment on cleanliness and inclusions in MRT2.5 steel

  • Online:2026-08-05 Published:2026-07-21

摘要: 马口铁采用Al脱氧,会生成大量硬质的Al2O3夹杂。而该钢种的冷轧薄板对表面质量有较高要求,故需控制含铝类硬质夹杂的数量及形态,钙处理工艺能够改善氧化铝夹杂物的形态和粒径。通过工业试验及热力学计算钢中钙和硫含量对氧化铝夹杂改性的影响,并研究了温度对夹杂物类型的影响。工业试验结果表明,钙处理3 min后夹杂物的平均粒径由2.01~2.61 μm降低至1.44~1.60 μm,夹杂物的数量密度由29.85~46.51个/mm2升高至69.85~94.91个/mm2;LF出站时,夹杂物的平均粒径升高至1.82~2.43 μm,夹杂物的数量密度降低至39.95~53.05个/mm2。精炼至浇铸过程中,由于钢液温度降低,导致CaS夹杂析出,使得液态窗口变窄。因此,钢液成分对钙处理改性夹杂物效果影响很大,合理的控制钢液成分,能使钙将Al2O3夹杂改性为液态的钙铝酸盐,降低水口结瘤的风险。

关键词: 马口铁, Al2O3夹杂, 钙处理, 液态窗口, 工业试验

Abstract: When aluminum is used for deoxidation in tinplate production, a large amount of hard, brittle Al2O3 inclusions are formed. As the cold-rolled thin sheet of this steel demands high surface quality, it is necessary to control the quantity and morphology of hard, brittle alumina-type inclusions. The calcium treatment process can modify the morphology and particle size of alumina inclusions. The influence of calcium and sulfur content in the steel on the modification of alumina inclusions was investigated through industrial trials and thermodynamic calculations, and the effect of temperature on inclusion types was also studied. The industrial trial results demonstrated that after 3 minutes of calcium treatment, the average size of inclusions decreased from 2.01-2.61 μm to 1.44-1.60  μm, while the number density of inclusions increased from 29.85-46.51 counts/mm2 to 69.85-94.91 counts/mm2. Upon exiting the ladle furnace, the average inclusion size increased to 1.82-2.43 μm, and the number density decreased to 39.95-53.05 counts/mm2. From refining to casting, the decrease in molten steel temperature leads to the precipitation of CaS inclusions, resulting in a narrowing of the liquid window. Therefore, the molten steel composition significantly affects the efficacy of Ca treatment for inclusion modification. Rational control of the molten steel composition enables the Ca to modify Al2O3 inclusions into liquid calcium aluminates, thereby reducing the risk of nozzle clogging.

Key words: tinplate, Al2O3 inclusions, calcium treatment, liquid window, industrial trials