电工钢 ›› 2026, Vol. 8 ›› Issue (1): 20-24.

• • 上一篇    下一篇

二次冷轧压下率对含铜取向硅钢组织演变与损耗特性的影响#br#

林学亮1,张雅静1,张青松1,2,黄 珊1,闫成亮1,2   

  1. 1.无锡普天铁心股份有限公司,江苏 无锡 214194;
    2.安庆新普电气设备有限公司,安徽 安庆 246005
  • 出版日期:2026-02-28 发布日期:2026-02-11

Influence of secondary cold rolling reduction rate on microstructural evolution and loss characteristics of copper⁃containing oriented silicon steel#br#

LIN Xueliang1,ZHANG Yajing1,ZHANG Qingsong1,2,HUANG Shan1,YAN Chengliang1,2   

  1. 1. Wuxi Putian Iron Core Co., Ltd., Wuxi 214194, China;
    2. Anqing Xinpu Electric Equipment Co., Ltd., Anqing 246005, China
  • Online:2026-02-28 Published:2026-02-11

摘要: 采用电子背散射技术(EBSD)研究了含铜取向硅钢在不同二次冷轧压下率的显微组织演变,并基于损耗分离模型分析损耗特性。结果表明:脱碳退火试样发生完全再结晶,平均晶粒尺寸约10 μm;冷轧至成品厚度,随着冷轧压下率的增大,形变带宽度逐渐减小,{111}<112>纤维织构取向密度先增强后减弱;当冷轧压下率为62.3 %时,冷轧试样的{111}<112>有利织构取向密度达到7.1,∑3不利晶界含量低,∑9及∑13b有利晶界含量高,成品试样磁致损耗较低,磁性能较优(P1.7/50=0.890 W/kg,B800=1.884 T)。

关键词: 含铜取向硅钢, 冷轧压下率, 组织演变, 损耗特性, 磁滞损耗

Abstract: The microstructure evolution of copper⁃containing oriented silicon steel under different secondary cold rolling reduction rates was studied using electron backscatter technology (EBSD), and the loss characteristics were analyzed based on a loss separation model. The results showed that the decarburization annealed sample completely finished recrystallization, with an average grain size of about 10 μm; when the sample rolled to the thickness of the finished product, as the cold rolling reduction rate increases, the width of the deformation zone gradually decreases, and the orientation density of the {111}<112>fiber texture first increases and then decreases; when the cold rolling reduction rate is 62.3 %, the density of {111}<112> beneficial texture orientation reaches 7.1. In addition, the sample showed a lower content of the ∑3 unbeneficial grain boundary and a higher content of the ∑9 and ∑13b beneficial grain boundaries. The hysteresis loss of finished sample is low, resulting in an excellent magnetic property (P1.7/50=0.890 W/kg, B800=1.884 T).

Key words: copper?containing oriented silicon steel, cold rolling reduction rate, microstructure evolution, loss characteristics, hysteresis loss