电工钢 ›› 2026, Vol. 8 ›› Issue (1): 52-56.

• • 上一篇    下一篇

碳含量对50W1300无取向硅钢电磁性能的影响及优化策略#br#

王 飞,李德君,张 冰,朱荣鑫   

  1. 本钢集团有限公司技术中心 先进汽车用钢开发与应用技术国家地方联合工程实验室,辽宁 本溪 117000
  • 出版日期:2026-02-28 发布日期:2026-02-24

Influence of carbon content on the electromagnetic properties of 50W1300 non⁃oriented silicon steel and optimization strategies#br#

WANG Fei,LI Dejun,ZHANG Bing,ZHU Rongxin   

  1. Technical Center of Ben Gang Group Corporation, National and Local Joint Engineering Laboratory of Advanced Automotive Steel Development and Application Technology, Benxi 117000, China
  • Online:2026-02-28 Published:2026-02-24

摘要: 结合无取向硅钢生产实际,探讨了碳含量对无取向硅钢电磁性能的影响,揭示了碳含量超标导致铁损增加、磁感下降的关键问题,并制定相应的解决和预防措施。根据50W1300生产实际及成品电磁性能、硬度检测结果可知,当碳含量超过0.005 %时,使铁损值P1.5/50从5.653 W/kg增加至6.422 W/kg,增加了13.60 %;磁感强度B50从1.766 T降低至1.742 T,降低了1.36 %;同时成品的硬度由HV105升高至HV129,增加了22.86 %。针对这一问题,制定了炼钢和冷轧退火工艺优化策略,成功解决了由于碳含量偏高导致成品电磁性能偏低和硬度偏高的问题。

关键词: 无取向硅钢, 碳含量, 电磁性能, 工艺优化

Abstract: Based on the actual production conditions of non⁃oriented silicon steel, this paper explored the influence of carbon content on the electromagnetic properties of non⁃oriented silicon steel, revealed the key issue that excessive carbon content leads to an increase in iron loss and a decrease in magnetic flux density, and formulates corresponding solutions and preventive measures. According to the actual production of 50W1300 and the results of electromagnetic properties and hardness tests of the products, it can be known that when the carbon content exceeds 0.005 %, the iron loss value P1.5/50 increases from 5.653 W/kg to 6.422 W/kg, an increase of 13.60 %. The magnetic induction intensity B50 decreases from 1.766 T to 1.742 T, a reduction of 1.36 %. At the same time, the hardness of the finished product rises from HV105 to HV129, an increase of 22.86 %. In response to this problem, optimization strategies for the steelmaking and cold rolling annealing processes were formulated, successfully solving the situation that the low electromagnetic properties and the high hardness of the products due to excessive carbon content.

Key words: non?oriented silicon steel, carbon content, electromagnetic properties, process optimization