DocumentCode :
3604259
Title :
Lorentz Force on Permanent Magnet Rings by Moving Electrical Conductors
Author :
Weise, Konstantin ; Carlstedt, Matthias ; Ziolkowski, Marek ; Brauer, Hartmut ; Toepfer, Hannes
Author_Institution :
Dept. of Adv. Electromagn., Tech. Univ. Ilmenau, Ilmenau, Germany
Volume :
51
Issue :
12
fYear :
2015
Firstpage :
1
Lastpage :
11
Abstract :
This paper addresses the calculation of Lorentz forces generated by axially or radially magnetized ring magnets due to passing ferromagnetic conductors. The boundary value problem is solved using the Fourier transform while considering the interaction between the magnetic field of the ring magnet and the induced eddy currents. The Lorentz force and the induced eddy current density are evaluated in integral form, including modified Bessel functions of the first and the second kind. The famous creeping magnet problem where a magnet travels inside a conducting pipe is extended to ring magnets. The obtained expressions are evaluated and compared with the finite-element solutions. It is observed that radially magnetized ring magnets generate higher Lorentz forces compared with their axially magnetized counterparts. The described scenario is applicable in the framework of flow rate evaluation, non-destructive testing, or electromagnetic damping. We provide supplementary material in the form of MATLAB functions to efficiently analyze such problems in similar areas of application. The present contribution is of great interest for theoretical, pedagogical, and practical reasons.
Keywords :
Bessel functions; Fourier transforms; boundary-value problems; eddy currents; ferromagnetic materials; magnetic fields; nondestructive testing; permanent magnets; Fourier transform; Lorentz force; axially magnetized ring magnets; boundary value problem; electromagnetic damping; ferromagnetic conductors; flow rate evaluation; induced eddy currents; magnetic field; modified Bessel functions; moving electrical conductors; nondestructive testing; permanent magnet rings; radially magnetized ring magnets; Conductors; Eddy currents; Lorentz covariance; Magnetic domains; Magnetic levitation; Magnetic resonance imaging; Magnetomechanical effects; Analytical models; Boundary value problems; Eddy currents; Electromagnetic induction; Permanent magnets; boundary value problems; eddy currents; electromagnetic induction; permanent magnets;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2015.2464784
Filename :
7180375
Link To Document :
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