DocumentCode :
842549
Title :
Generalization of the Classical Method for Calculating Dynamic Hysteresis Loops in Grain-Oriented Electrical Steels
Author :
Zirka, Sergey E. ; Moroz, Yuri I. ; Marketos, Philip ; Moses, Anthony J. ; Jiles, David C. ; Matsuo, T.
Author_Institution :
Dept. of Appl. Phys. & Technol., Dnepropetrovsk Nat. Univ., Dnepropetrovsk
Volume :
44
Issue :
9
fYear :
2008
Firstpage :
2113
Lastpage :
2126
Abstract :
We have studied the ability of two one-dimensional (1-D) time-stepping models, both based on the concept of magnetic viscosity, to reproduce dynamic loops and losses in grain-oriented (GO) electrical steels under arbitrary magnetization regimes. We found that GO steels (0.3 mm thick) can be modeled quite accurately at magnetizing frequencies up to 200 Hz by a thin sheet representation, which is applied to a bulk material. At higher frequencies, acceptable results can be obtained through a finite-difference solver of a 1-D penetration equation whose applicability to GO steels can be explained in terms of domain wall bowing. Because of the inertial effect introduced by the magnetic viscosity, the average error in the loss prediction is reduced from 40% for the conventional classical method to 5% for the methods we studied. We demonstrated the accuracy of the models using two GO steels whose losses and B-H characteristics were measured by computer-controlled Epstein and single-sheet testers.
Keywords :
eddy current losses; ferromagnetic materials; finite difference time-domain analysis; iron alloys; magnetic aftereffect; magnetic domain walls; magnetic hysteresis; magnetic leakage; magnetic thin films; silicon alloys; 1-D penetration equation; B-H characteristics; FeCSiJk; GO steel; computer-controlled Epstein; domain wall bowing; dynamic hysteresis loops; dynamic loss; finite-difference solver; grain-oriented electrical steel; inertial effect; magnetic viscosity; magnetization; magnetizing frequency; one-dimensional time-stepping models; single-sheet testers; thin sheet; Finite-difference time-domain analysis; grain-oriented steel; losses; magnetic hysteresis;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2008.2000662
Filename :
4604767
Link To Document :
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