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超薄取向硅钢的研究进展
引用本文:张波,孟利,张宁,何承绪,杨富尧,马光. 超薄取向硅钢的研究进展[J]. 钢铁, 2020, 55(10): 96-102. DOI: 10.13228/j.boyuan.issn0449-749x.20200039
作者姓名:张波  孟利  张宁  何承绪  杨富尧  马光
作者单位:1.钢铁研究总院冶金工艺研究所, 北京 100081;
2.全球能源互联网研究院有限公司先进输电技术国家重点实验室, 北京 102211
基金项目:国家重点研发计划资助项目(2017YFB0903901)
摘    要: 随着特高压直流输电和灵活交流输电的迅猛发展,超薄取向硅钢作为阳极饱和电抗器核心材料发挥着不可替代的作用;同时,随着节能环保的要求不断提高,超薄化成为取向硅钢的重要发展方向。近年来,超薄取向硅钢的制备成为材料冶金领域的研究热点。总结了超薄取向硅钢的制备方法,综述了超薄取向硅钢的研究进展,讨论了超薄取向硅钢磁性能的影响因素,提出了超薄取向硅钢的发展方向,为超薄取向硅钢的未来研发提供了参考依据。

关 键 词:超薄取向硅钢  磁感  铁损  轧制  退火  再结晶  织构  
收稿时间:2020-02-04

Research progress of ultra-thin grain-oriented silicon steel
ZHANG Bo,MENG Li,ZHANG Ning,HE Cheng-xu,YANG Fu-yao,MA Guang. Research progress of ultra-thin grain-oriented silicon steel[J]. Iron & Steel, 2020, 55(10): 96-102. DOI: 10.13228/j.boyuan.issn0449-749x.20200039
Authors:ZHANG Bo  MENG Li  ZHANG Ning  HE Cheng-xu  YANG Fu-yao  MA Guang
Affiliation:1. Metallurgical Technology Institue, Central Iron and Steel Research Institute, Beijing 100081, China; 2. State Key Laboratory of Advanced Power Transmission Technology,Global Energy Interconnection Research Institute Co., Ltd., Beijing 102211, China
Abstract:With the rapid development of ultrahigh-voltage direct current transmission system and flexible alternating current transmission system,ultra-thin grian-oriented silicon steel plays an irreplaceable role as the core material of anode saturated reactor. At the same time,with the requirement of energy saving and environmental protection,ultra-thin steel has become an important development direction of oriented silicon steel. In recent years,the preparation of ultra-thin grian-oriented silicon steel has become a research hotspot in the field of material metallurgy. In this paper,the preparation methods,research progress,influence factors of magnetic property and development direction of ultra-thin grian-oriented silicon steel were summarized,providing the reference basis for the development of ultra-thin grian-oriented silicon steel in future.
Keywords:ultra-thin grain-oriented silicon steel  magnetic induction  core loss  rolling  annealing  recrystallization  texture  
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