DocumentCode :
849276
Title :
Evolution of magnetic properties and microstructure of high-silicon steel during hot dipping and diffusion annealing
Author :
Ros-Yañez, Tanya ; Houbaert, Yvan ; De Wulf, Marc
Author_Institution :
Dept. of Metall. & Mater. Sci., Ghent Univ., Belgium
Volume :
38
Issue :
5
fYear :
2002
fDate :
9/1/2002 12:00:00 AM
Firstpage :
3201
Lastpage :
3203
Abstract :
Hot dipping and diffusion annealing is an alternative production process to obtain steel with high silicon contents while avoiding rolling problems. Surface alloying with Si and Al is achieved on a low-Si steel substrate (≈ 3%Si) by hot dipping in a hypereutectic Al-27%Si molten bath. To obtain a sufficient amount of Al and Si in solid solution over the thickness, a diffusion annealing treatment is performed after hot dipping. A diffusion annealing at 1250°C allows the homogenization of the composition obtaining a concentration of 6.3% Si and 4.5% Al over the thickness. The evolution of microstructure, crystallographic texture, and magnetic properties in each step of the process is reported. After dipping and annealing, the losses decreased proportionally with the total Si-Al concentration achieved during the process. Values as low as 0.6 W/kg at 50 Hz (1T) and 10 W/kg at 400 Hz (1T) have been obtained in the experimental materials with high Si + Al content and 0.35-mm thickness.
Keywords :
annealing; crystal microstructure; diffusion; ferromagnetic materials; iron alloys; silicon alloys; surface alloying; texture; 1 T; 1250 degC; 400 Hz; 50 Hz; Fe-Si-Al; Si-Al solid solution; crystallographic texture; diffusion annealing; ferromagnetic material; high-silicon steel; hot dipping; magnetic properties; microstructure; power loss; production process; surface alloying; Alloying; Annealing; Crystallography; Magnetic properties; Microstructure; Production; Silicon; Solids; Steel; Surface treatment;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2002.802414
Filename :
1042497
Link To Document :
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