电工钢 ›› 2026, Vol. 8 ›› Issue (2): 8-12.

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取向硅钢高温退火的水扩散行为及影响因素研究

唐玉琴,刘志桥,沈晗阳,王大航,张军


  

  1. (无锡普天铁心股份有限公司,江苏无锡 214194) 
  • 出版日期:2026-04-28 发布日期:2026-04-29

Study on vapour diffusion behavior and influencing factors during high‑temperature annealing process of grain‑oriented silicon steel

TANG Yuqin, LIU Zhiqiao, SHEN Hanyang, WANG Dahang, ZHANG Jun   

  1.  (Wuxi Putian Iron Core Co., Ltd., Wuxi 214194, China)
  • Online:2026-04-28 Published:2026-04-29

摘要: 为解决取向硅钢高温退火过程中因水汽残留导致的表面质量缺陷问题,通过非等温热重实验、钢卷内部温度实测及罩内含水量跟踪监测,系统研究了取向硅钢高温退火一次均热段内,氧化镁涂层中自由水蒸发、氢氧化镁分解的规律,以及钢卷温差对水汽扩散的影响,并探究了一次均热段保护气流量和温度对成品表面质量的调控作用。实验结果表明:氧化镁涂层中氢氧化镁的起始分解温度为 195℃,终止分解温度为 412℃;涂层中自由水与化合水的质量占比分别为 0.13% 和 0.46%。工业生产中钢卷外圈与中部的最大温差可达 420℃,不同位置氢氧化镁的分解时间差最高达 20h;罩内含水量随保温时间呈 “先升高后降低” 的变化趋势。增大一次均热段保护气流量或降低一次均热段温度,可有效减少钢卷表面水印缺陷面积占比,显著改善产品表面质量。

关键词: 取向硅钢, 高温退火, 氧化镁涂层, 罩内含水量, 表面质量

Abstract:

To address the surface quality defects caused by water vapor residue during the high‑temperature annealing of grain‑oriented silicon steel, this study systematically investigated the evaporation characteristics of free water and the decomposition rules of magnesium hydroxide in the magnesium oxide coating, as well as the effect of coil temperature difference on water vapor diffusion in the first soaking section of high‑temperature annealing. Meanwhile, it explored the regulating effect of protective atmosphere flow rate and temperature in the first soaking section on the surface quality of finished products, by means of non‑isothermal thermogravimetric experiments, actual measurement of internal coil temperature and real‑time monitoring of water content inside the inner cover. The experimental results show that the initial and final decomposition temperatures of magnesium hydroxide in the magnesium oxide coating are 195℃ and 412℃, respectively; the mass ratios of free water and combined water in the coating are 0.13% and 0.46%, respectively. In actual industrial production, the maximum temperature difference between the outer and middle layers of the coil can reach 420℃, and the maximum difference in decomposition time of magnesium hydroxide at different positions of the coil is up to 20h; the water content inside the inner cover shows a trend of “first increasing and then decreasing” with holding time. Increasing the flow rate of protective atmosphere or reducing the temperature in the first soaking section can effectively reduce the area ratio of watermark defects on the coil surface and significantly improve the product surface quality.

Key words: grain-oriented silicon steel, high-temperature annealing, magnesium oxide coating, water content inside inner cover, surface quality