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二次退火温度对无取向硅钢组织和磁性能的影响
引用本文:陆佳栋,吴圣杰,岳重祥,李化龙. 二次退火温度对无取向硅钢组织和磁性能的影响[J]. 金属热处理, 2021, 46(3): 67-70. DOI: 10.13251/j.issn.0254-6051.2021.03.013
作者姓名:陆佳栋  吴圣杰  岳重祥  李化龙
作者单位:江苏省沙钢钢铁研究院, 江苏 张家港 215625
摘    要:对1.2%Si无取向硅钢进行不同温度的二次退火试验,研究了不同二次退火温度对无取向硅钢组织和磁性能的影响。结果表明:二次退火能显著增大铁素体晶粒尺寸,降低无取向硅钢铁损;在780~820 ℃下进行二次退火,铁损降幅最大,达到1.0 W/kg,无取向硅钢的磁性能达到最佳水平,此时平均晶粒尺寸为83~114 μm。通过扫描电镜对不同温度二次退火后的试样进行析出物统计,发现试样中的析出物主要为MnS-CuxS,当二次退火温度为780~820 ℃时,0.1~0.2 μm的细小MnS-CuxS析出物比例最低。

关 键 词:无取向硅钢  二次退火  磁性能  析出物  
收稿时间:2020-09-03

Effect of secondary annealing temperature on microstructure and magnetic properties of non-oriented silicon steel
Lu Jiadong,Wu Shengjie,Yue Chongxiang,Li Hualong. Effect of secondary annealing temperature on microstructure and magnetic properties of non-oriented silicon steel[J]. Heat Treatment of Metals, 2021, 46(3): 67-70. DOI: 10.13251/j.issn.0254-6051.2021.03.013
Authors:Lu Jiadong  Wu Shengjie  Yue Chongxiang  Li Hualong
Affiliation:Institute of Research of Iron and Steel,Shasteel, Zhangjiagang Jiangsu 215625, China
Abstract:Secondary annealing experiment of 1.2%Si non-oriented silicon steel at different temperatures were carried out,and the effect of secondary annealing temperature on the microstructure and magnetic properties of the steel was investigated.The results show that the grain size of ferrite is increased and the core loss is reduced after secondary annealing processes.The core loss of experimental steel is reduced significantly in the annealing temperature range of 780-820℃.In this temperature range,the magnetic properties of non-oriented silicon steel is the best,the core loss reduction is 1.0 W/kg,and the average grain size is 83-114μm.Besides,the precipitates of the experimental steels were investigated by means of SEM.The results show that the main precipitate in the experimental steel is MnS-CuxS.The amount of fine MnS-CuxS precipitate with the size of 0.1-0.2μm is the lowest in the annealing temperature range of 780-820℃.
Keywords:non-oriented silicon steel  secondary annealing  magnetic properties  precipitate
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