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Meeting 2024 TMS Annual Meeting & Exhibition
Symposium Electrical Steels
Presentation Title Influence of Hot Rolling Reduction Rate on the Microstructure, Texture of a Strip Cast Fe-2.5 wt% Si Non-oriented Electrical Steel
Author(s) Huihui Wang, Wanlin Wang, Peisheng Lyu, Chenyang Zhu, Xueying Lyu, Lulu Song, Yunli Zhang
On-Site Speaker (Planned) Huihui Wang
Abstract Scope A 2.5 wt% Si electrical steel was prepared based on the ultra-thin strip casting process, and its magnetic properties are closely related to the material's microstructure and texture. Therefore, it is the focus of this paper to control the evolution of grain size and texture by modulating the thermal processing parameters, so as to improve the magnetic properties. In this paper, we mainly study the effect of the hot rolling reduction rate (30% ~ 70%) on the microstructure and texture. The results show that with the increase in the reduction rate, the grain is gradually refined. The heavy reduction rate (70%) increased the area fraction of Goss ({110}<001>) and γ-fiber texture grains and decreased the grain size, which was mainly a result of recrystallization. At lower reduction rates of 30%, the λ-fiber texture is still inherited and deformation bands dominate within the grains.
Proceedings Inclusion? Planned:
Keywords Characterization, Iron and Steel, Magnetic Materials

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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