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Meeting 2024 TMS Annual Meeting & Exhibition
Symposium Electrical Steels
Presentation Title Effect of Processing Methods on the Magnetic Properties of Non-oriented Electrical Steel
Author(s) Shengjie Wu, Wanlin Wang, Chongxiang Yue, Hualong Li
On-Site Speaker (Planned) Shengjie Wu
Abstract Scope The effects of two sample processing methods, punching and laser cutting, on the magnetic properties of high-grade non oriented electrical steel were studied. The results show that the coercivity and iron loss of laser cutting samples are higher than those of mechanical punching, while the permeability get lower in laser cutting samples. Through the analysis of grain internal stress by EBSD, it is found that there is a stress concentration area in the cutting section of punching sample, while there is no obvious stress concentration area near in the cutting section of laser cutting sample. While the laser cutting surface is wrapped with a oxide layer with the thickness of 1 μm through EDS energy spectrum analysis. The oxide layer causes the hysteresis loss increased under the magnetic induction intensity of 1.0 T, and the influence is amplified with the increase of loading frequency. However, when the magnetic induction intensity increases to 1.5 T, the influence of oxide layer on hysteresis loss decreases and the abnormal loss increases.
Proceedings Inclusion? Planned:
Keywords Magnetic Materials, Iron and Steel, Process Technology

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

Atomic-Scale Mechanisms Behind the Abnormal Growth of Goss Grains in Grain-oriented Electrical Steels
Compositional Design of Fe-Si-X High Silicon Steel
Effect of Processing Methods on the Magnetic Properties of Non-oriented Electrical Steel
Effect of Silicon on the Microstructural Features of Electrical Steels During Torsion Simulation of Hot Rolling
Effect of Superheat and Boron Element on Interfacial Heat Transfer of Silicon Steel during Sub-rapid Solidification
Influence of Hot Rolling Reduction Rate on the Microstructure, Texture of a Strip Cast Fe-2.5 wt% Si Non-oriented Electrical Steel
Microstructure and Texture Evolution During Hot Dipping of a 3.2 wt.% Si Non-oriented Electrical Steel
Recrystallization of a 2.8 wt% Si Non-oriented Electrical Steel After Skew Cold Rolling at Different Angles to the Hot Rolling Direction
{001} vs {111} Recrystallization Textures in Ultra-low Carbon Steel

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