| [1] |
MENG Qingwang, ZHANG Jun, GUO Hao, ZHU Jueshun, JIAO Jingye.
Effect of the initial structure of low⁃temperature copper⁃containing grain⁃oriented silicon steels on the secondary recrystallization behavior#br#
[J]. Electrical Steel, 2026, 8(3): 6-.
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| [2] |
SHI Xiangju, LIU Xiaoxiao, WANG Xiang, YAN Chengliang, DU Xinghong, CHEN Mingyi.
Influence of two‑stage cold rolling process on magnetic properties of ultra‑thin non‑oriented silicon steel
[J]. Electrical Steel, 2026, 8(2): 42-46.
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| [3] |
LIN Xueliang, ZHANG Yajing, ZHANG Qingsong, HUANG Shan, YAN Chengliang.
Influence of secondary cold rolling reduction rate on microstructural evolution and loss characteristics of copper⁃containing oriented silicon steel#br#
[J]. Electrical Steel, 2026, 8(1): 20-24.
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| [4] |
LI Xiang, LUO Wen, DAI Ziyue, LIU Qi, TIAN Aoqi, XU Zhaoyang, HE Xiaoguo, CHENG Zhaoyang.
Effect of annealing temperature on microstructure, texture and properties of high-strength non-oriented silicon steel
[J]. Electrical Steel, 2025, 7(6): 1-.
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| [5] |
ZHANG Ning, TU Yang, FU Chao, MENG Li.
Study on the annealing microstructure, texture and magnetic properties evolution of Fe⁃3 % Si ribbons prepared by planar flow casting#br#
[J]. Electrical Steel, 2025, 7(5): 1-.
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| [6] |
HUANG Xiaolei, WANG Yinping, LIU Haitao.
Effect of normalization and annealing temperatures on the microstructure, texture evolution and magnetic properties of thin⁃gauge high⁃Si non⁃oriented silicon steels
[J]. Electrical Steel, 2025, 7(5): 25-.
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| [7] |
LU Tianlin, SHI Lifa, CHEN Mingxia, CHENG Guoqing, WU Yong.
Effect of thickness on properties of silicon steel for new energy vehicles
[J]. Electrical Steel, 2025, 7(5): 37-.
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| [8] |
LIU Wangchen, AI Chengshen, WANG Gang, LI Jiangwei, WANG Cun.
Effect of hot rolling temperature on hot rolling microstructure and texture of 50W800 non oriented silicon steel
[J]. Electrical Steel, 2025, 7(5): 41-.
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| [9] |
CHEN Jianhua, CHU Shaoyang, ZHOU Qihang, GUO Feihu, QIAO Jialong, QIU Shengtao.
Evolution of microstructure and texture for 35W300 high grade non-oriented silicon steel
[J]. Electrical Steel, 2025, 7(4): 1-.
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| [10] |
LI Jiale, MA Deji, WANG Sifan, ZENG Lubin, PEI Ruilin.
Testing and analysis of core loss performance of silicon steel materials for new energy vehicle drive motors
[J]. Electrical Steel, 2025, 7(4): 14-.
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| [11] |
LI Hongcheng, LIU Xiaoxiao, WANG Xiang, CHEN Mingyi, DU Xinghong, WANG Yi, SHI Xiangju.
Study on the microstructure and texture evolution of 0.18 mm thickness grain oriented silicon steel
[J]. Electrical Steel, 2025, 7(3): 8-.
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| [12] |
ZHOU Yucheng, XIONG Zhifang, YU Jiawen, WANG Liangang, TANG Yuqin, YAN Chengliang.
Research on mechanical properties and anisotropy of high grade non-oriented silicon steel
[J]. Electrical Steel, 2025, 7(1): 21-.
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| [13] |
LI Ruifeng , SI Liangying , PANG Weiguang , TIAN Jianhui , ZHAO Songshan , HU Zhiyuan , MA Lin .
Effect of continuous casting electromagnetic stirring on recrystallization of high magnetic induction oriented silicon steel#br#
[J]. Electrical Steel, 2024, 6(5): 8-12.
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| [14] |
.
In-situ EBSD study on the texture evolution of normalizednonoriented silicon steel at 900 ℃
[J]. Electrical Steel, 2024, 6(4): 9-.
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| [15] |
HUANG Jianlong, SHI Wenmin.
Effect of heating rate on the microstructure and texture ofhigh grade nonoriented silicon steel during normalizing
[J]. Electrical Steel, 2024, 6(4): 22-.
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