DocumentCode :
3602614
Title :
Efficient Deperming Protocols Based on the Magnetic Properties in Demagnetization Process
Author :
Hye Sun Ju ; Hyun Ju Chung ; Sang Hyeon Im ; Dong Wook Jeong ; Jong Wang Kim ; Hyang Beom Lee ; Gwan Soo Park
Author_Institution :
Sch. of Electr. Eng., Pusan Nat. Univ., Busan, South Korea
Volume :
51
Issue :
11
fYear :
2015
Firstpage :
1
Lastpage :
4
Abstract :
Recently developed magnetic materials have high coercive force and high squareness ratios to meet the industrial demand. In the electric and electronics industries and in defense development, a deperming procedure is needed to reduce residual magnetization to zero. But the conventional deperming has a limitation of not considering the magnetic hysteresis. To research an efficient and reliable deperming current, this paper proposes a deperming analysis process using the Preisach modeling combined with the finite-elements method, which is verified by magnetic treatment facility experiments. By analyzing the trace on the Preisach plane, flash-D deperm, which leaves a lot of trace remaining on the high-density coercive force, was found to be more effective. Therefore, a method to formulate a flash-D deperm current using Preisach modeling is proposed. Finally, it is expected to obtain the most efficient flash-D deperm current according to the magnetic hysteresis of each ferromagnetic material.
Keywords :
coercive force; demagnetisation; ferromagnetic materials; finite element analysis; magnetic hysteresis; Preisach modeling; defense development; demagnetization process; deperming current; deperming protocols; electric industries; electronics industries; ferromagnetic material; finite-elements method; flash-D deperm; high-density coercive force; magnetic hysteresis; magnetic materials; magnetic properties; magnetic treatment facility experiments; residual magnetization; squareness ratios; Coercive force; Demagnetization; Magnetic domains; Magnetic fields; Magnetic hysteresis; Magnetic materials; Magnetization; Anhysteretic Deperm; Anhysteretic deperm; Deperming; Ferromagnetic Material; Finite Elements Method; Flash-D Deperm; Preisach Model; Preisach model; deperming; ferromagnetic material; finite-elements method (FEM); flash-D deperm;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2015.2436703
Filename :
7114290
Link To Document :
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