电工钢 ›› 2026, Vol. 8 ›› Issue (3): 16-.

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氧化镁中氧化钙含量对取向硅钢底层质量的影响

程迪夫1,刘 敏2,曾 剑1,王雄奎1,唐 爽1,余信义1,左传海1,杜玉泉1,夏乘峰1,马正强1   

  1. 1.武汉钢铁有限公司 硅钢部,湖北 武汉 430083;
    2.宝山钢铁股份有限公司 中央研究院(青山),湖北 武汉 430080
  • 出版日期:2026-06-28 发布日期:2026-06-18

Effect of calcium oxide content in magnesium oxide on the quality of forsterite substrate in grain⁃oriented silicon steel#br#

CHENG Difu1,LIU Min2,ZENG Jian1,WANG Xiongkui1,TANG Shuang1,YU Xinyi1,#br# ZUO Chuanhai1,DU Yuquan1,XIA Chengfeng1,MA Zhengqiang1#br#   

  1. 1.Silicon Steel Department, Wuhan Iron and Steel Co., Ltd., Wuhan 430083, China;
    2.Central Research Institute(Qingshan),Baoshan Iron&Steel Co.,Ltd.,Wuhan 430080, China
  • Online:2026-06-28 Published:2026-06-18

摘要: 针对常用取向硅钢级氧化镁中氧化钙含量影响取向硅钢底层质量的问题,采用扫描电子显微镜研究了不同氧化钙含量的氧化镁对取向硅钢底层状态及成品钢带表面的影响。结果表明:氧化镁中的氧化钙含量会显著影响取向硅钢成品的底层质量;随着氧化镁中氧化钙的质量分数从0.2 %升高到0.5 %,烘干后钢带表面氧化镁的水化率由1.01 %逐步提升至1.92 %,且成品底层形貌中氧化镁颗粒性变大且均匀性变差,钢带宏观表面出现氧化现象;当氧化镁中氧化钙含量增加的时候,其涂液中的水含量也相应增加,在环形炉高温退火工序,水蒸气在钢卷层间向外排出的过程中在钢卷端部滞留,对钢带边部进行附加氧化,造成成品钢带的氧化缺陷。

关键词: 氧化镁, 钙含量, 取向硅钢, 硅酸镁底层

Abstract: This paper investigated the effect of the calcium oxide (CaO) content in magnesium oxide (MgO) coatings on the quality of the forsterite substrate formed on grain⁃oriented silicon steel. Using scanning electron microscopy (SEM), the study examined the impact of different CaO concentrations on both the substrate morphology and the surface condition of the finished steel strip. The results demonstrated that the CaO content in MgO was a critical factor for the final substrate quality. Specifically, as the CaO mass fraction was increased from 0.2 % to 0.5 %, the hydration rate of the MgO layer post⁃drying rose from 1.01 % to 1.92 %. The increase in CaO corresponded with a coarsening of MgO particles and poorer uniformity in the substrate layer, which macroscopically manifested as surface oxidation on the steel strip. The mechanism suggests that higher CaO content introduces more water into the MgO slurry. Consequently, during the high⁃temperature annealing phase in a bell furnace, steam trapped at the coil edges as it escapes between layers leads to additional oxidation along the strip edges, causing the observed defects.

Key words: magnesium oxide, calcium content, grain?oriented silicon steel, forsterite substrat