电工钢 ›› 2025, Vol. 7 ›› Issue (3): 40-.

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无取向硅钢楔形精度控制技术研究与应用

蔡海斌,肖明,赵敏   

  1. 武汉钢铁有限公司 热轧厂,湖北 武汉 430083
  • 出版日期:2025-06-28 发布日期:2025-06-12

Research and application of precision control technology for wedge shape in non-oriented silicon steel

CAI Haibin, XIAO Ming, ZHAO Min   

  1. Hot Rolling Plant of Wuhan Iron and Steel Co., Ltd., Wuhan 430083, China
  • Online:2025-06-28 Published:2025-06-12

摘要: 为实现硅钢工序少减边、不剪边工作,提高硅钢产品全工序成材率的目的,热轧工序硅钢楔形精度控制技术需要进一步提升。无取向硅钢楔形精度控制技术的核心是工艺优化、参数修正,本文主要通过对带钢头部、中部、尾部楔形精度控制技术的研究与应用,开发开轧辊缝预摆技术、终轧温度稳定控制技术、负荷再分配技术、精轧导板短行程控制技术,配合高速钢轧辊的应用,将热轧工序无取向硅钢楔形精度提升至95.5 %以上,最优水平可达98 %。

关键词: 硅钢, 楔形精度, 轧辊缝预摆, 终轧温度, 负荷再分配

Abstract: To achieve the goal of reducing or eliminating edge trimming in silicon steel production processes and improving the overall yield across the entire production process, further advancements in wedge shape precision control technology during the hot rolling process are required. The core of non-oriented silicon steel wedge shape precision control technology lies in process optimization and parameter adjustment. This paper primarily focused on the research and application of wedge shape precision control technologies for the head, middle, and tail sections of the steel strip. By developing technologies such as pre-setting of roll gap at the start of rolling, stable temperature control during final rolling, load redistribution, and short-stroke guide plate control in finishing rolling, and combining these with the application of high-speed steel rolls, the wedge shape precision of non-oriented silicon steel in the hot rolling process has been improved to over 95.5 %, with the best performance reaching up to 98 %.

Key words: silicon steel, wedge shape precision, pre-setting of roll gap, final rolling temperature, load re-allocation