Xu Yunbo, Jiao Haitao, Qiu Wenzheng, Misra Raja Devesh Kumar, Li Jianping
State Key Laboratory of Rolling and Automation, Northeastern University, Shenyang 110819, China.
Laboratory for Excellence in Advanced steel Research, Department of Metallurgical, Materials, and Biomedical Engineering, University of Texas at El Paso, El Paso, TX 79968, USA.
Materials (Basel). 2018 Jul 8;11(7):1161. doi: 10.3390/ma11071161.
The use of twin-roll strip casting for the preparation of non-oriented silicon steel has attracted widespread attention in recent years, but related reports are limited. In this study, both one- and two-stage cold rolling with three intermediate annealing temperatures were employed to produce strip cast non-oriented silicon steel. The evolution of the microstructure and texture through the processing routes and its effect on magnetic properties were studied. Compared with one-stage rolling, two-stage rolling increased the in-grain shear bands and the retention of Cube texture in the cold rolled sheets, thereby promoting the nucleation of favorable Goss and Cube grains and restraining the nucleation of harmful {111}<112> grains. With the increase in intermediate annealing temperature, the η-fiber texture in annealed sheets was gradually enhanced, and the average grain size was increased, leading to significant improvement of magnetic properties.
近年来,采用双辊薄带连铸制备无取向硅钢受到广泛关注,但相关报道有限。本研究采用一级和二级冷轧并结合三种中间退火温度来生产薄带连铸无取向硅钢。研究了加工过程中微观结构和织构的演变及其对磁性能的影响。与一级轧制相比,二级轧制增加了冷轧板中的晶内剪切带和立方织构的保留率,从而促进了有利的高斯织构和立方织构晶粒的形核,并抑制了有害的{111}<112>晶粒的形核。随着中间退火温度的升高,退火板中的η-纤维织构逐渐增强,平均晶粒尺寸增大,磁性能得到显著改善。