A magnetic brake with a solid iron cylinder rotating at high speeds is considered. The rotor iron is both conductive and permeable. The magnetisation curve is non‐linear. Special attention is paid to the correct integration of the angular velocity term. A Newton‐Raphson scheme dealing with the non‐linear material characteristics is applied. The numerical oscillations appearing in the finite element model at high velocities are overcome by an adaptive mesh refinement technique combined with the artificial diffusion upwind technique. End effects due to the finite length of the rotor are incorporated by an electric circuit coupling. Simulations are performed to study the influence of the saturation of the moving rotor upon the speed‐torque characteristic of the magnetic brake. It is remarkable that in the case of this solid rotor magnetic brake, the saturation of the rotor iron has a beneficial influence on the device performance.
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1 June 2002
Technical Paper|
June 01 2002
Finite element simulation of a magnetic brake with a soft magnetic solid iron rotor
Herbert De Gersem;
Herbert De Gersem
Dep. EE (ESAT), Div. ELEN, Katholieke Universiteit Leuven, Kardinaal Mercierlaan 94, B‐3001 Leuven, Belgium
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Kay Hameyer
Kay Hameyer
Dep. EE (ESAT), Div. ELEN, Katholieke Universiteit Leuven, Kardinaal Mercierlaan 94, B‐3001 Leuven, Belgium
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Publisher: Emerald Publishing
Online ISSN: 2054-5606
Print ISSN: 0332-1649
© MCB UP Limited
2002
COMPEL (2002) 21 (2): 296–306.
Citation
De Gersem H, Hameyer K (2002), "Finite element simulation of a magnetic brake with a soft magnetic solid iron rotor". COMPEL, Vol. 21 No. 2 pp. 296–306, doi: https://doi.org/10.1108/03321640210416386
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