[1] |
LI Haoze, LI Min, LIU Dezhuang, LI Aodi, MA Yingche.
Effects of yttrium on microstructure, elevatedtemperature tensile properties and fracture mechanism of 6.5 % Si non-oriented electrical steel#br#
[J]. Electrical Steel, 2022, 4(1): 18-.
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[2] |
CHEN Mingxia, PEI Yinghao, SHI Lifa, QI Xuan, XIA Xuelan, ZHAN Yungao.
Effects of annealing temperature on microstructural texture and magnetic properties of 3.1 % Si non-oriented silicon steel#br#
[J]. Electrical Steel, 2022, 4(1): 31-.
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[3] |
LI Yulin, LI Jianwei , TIAN Baozhi, ZHANG Hang, PEI Ruilin.
Research and development on high-strength silicon steel application technology of new generation new energy vehicle driving motor#br#
[J]. Electrical Steel, 2021, 3(6): 8-.
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[4] |
GAO Zhenyu, CHEN Chunmei , LI Lei, LIU Wenpeng, HUANG Yongzhe, LUO Li, LI Yadong.
Effect of Ti and S on precipitates of high grade nonoriented silicon steel
[J]. Electrical Steel, 2021, 3(6): 13-.
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[5] |
YAO Haidong, LIU Gongtao, HU Zhiyuan, AN Dongyang, ZHANG Baolei, CHENG Lin.
Influence of normalizing temperature on microstructure and properties of non-oriented electrical steel sheets#br#
[J]. Electrical Steel, 2021, 3(6): 19-.
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[6] |
FU Junfa.
The online replacement of furnace roll of horizontal annealing furnace for cold rolled non-oriented silicon steel#br#
[J]. Electrical Steel, 2021, 3(6): 37-.
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[7] |
JIANG Nan, HE Guosai, CHEN Meng, CHEN Xi.
Application research on the rolling of non-oriented silicon steel by full frame high speed steel rolls
[J]. Electrical Steel, 2021, 3(6): 40-.
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[8] |
YANG Ping, LI Yang, GU Xinfu, ZHANG Haili, JIA Zhiwei.
Analyses of the stability of microstructure and texture and the surface effects of thin gauge grain oriented silicon steel during abnormal grain growth
[J]. Electrical Steel, 2021, 3(5): 1-.
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[9] |
ZHANG Haili, JIA Zhiwei, LI Yang, LUO Li, ZHANG Jing, LI Li, YANG Ping, JIANG Qiwu.
Development of 0.20 mm thin gauge grainoriented silicon steel anddiscussion on key process parameters
[J]. Electrical Steel, 2021, 3(5): 10-.
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[10] |
GUI Pan.
Study on evolution of microstructure and texture in grainorientedsilicon steel with low temperature reheating
[J]. Electrical Steel, 2021, 3(5): 15-.
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[11] |
XU Jinsong.
Value and market opportunity of grainoriented silicon steelunder carbon peak and carbon neutralization strategy
[J]. Electrical Steel, 2021, 3(5): 21-.
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[12] |
HU Chunyang, SONG Renbo, WANG Yuqi, WANG Yongjin, ZHAO Zhiyang, ZHANG Yingchao.
Effect of normalization annealing on texture and magnetic properties of 27AHSW450 high strength nonoriented silicon steel
[J]. Electrical Steel, 2021, 3(5): 25-.
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[13] |
SHI Aichen, CHEN Dongmei, YAO Haidong, LIU Yujin, CAO Ruifang, LIU Haitao.
Effect of stress relieving annealing process on microstructure and magnetic properties of nonoriented silicon steel
[J]. Electrical Steel, 2021, 3(5): 32-.
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[14] |
YUE Chongxiang, JIANG Yi, NI Weifeng, WU Shengjie, MA Han.
Demand forecast and development suggestion of domesticnonoriented silicon steel in the next 15 years
[J]. Electrical Steel, 2021, 3(5): 37-.
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[15] |
WANG Ruoping, MAO Jionghui, LIU Jing, JIA Juan, LIU Wenyan, ZHANG Yanwen.
Texture study of hot rolled plate by electric heating for low temperature high magnetic induction grain-oriented silicon steel
[J]. Electrical Steel, 2021, 3(4): 1-.
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