DocumentCode :
1434160
Title :
End-Winding Vibrations Caused by Steady-State Magnetic Forces in an Induction Machine
Author :
Lin, Ranran ; Laiho, Antti Nestori ; Haavisto, Ari ; Arkkio, Antero
Author_Institution :
Dept. of Electr. Eng., Aalto Univ., Espoo, Finland
Volume :
46
Issue :
7
fYear :
2010
fDate :
7/1/2010 12:00:00 AM
Firstpage :
2665
Lastpage :
2674
Abstract :
We conducted a 3-D electromagnetic analysis coupled with a 3-D mechanical analysis to analyze end-winding vibrations and deformation in an induction machine caused by steady-state magnetic forces on the end winding. Both the analyses were based on the finite-element method. The electromagnetic analysis was used to calculate magnetic forces. During the mechanical analysis, complex support structures in the end region were simplified. We first updated and validated the mechanical model according to a modal model obtained from a modal test, and afterward analyzed deformation, vibrations, and stresses. According to the analysis, the shape of the rotary dynamic deformation of the end winding caused by dynamic forces is similar to the most excitable mode shape though the natural frequency of that mode is much higher than the excitation frequency. The static deformation caused by static forces tends to expand the coil ends outward. Under both types of deformation, the nose portion of the coil ends experiences larger displacement, but von Mises stresses are larger mainly in the knuckle portion.
Keywords :
asynchronous machines; deformation; electromagnetic forces; finite element analysis; machine windings; vibrations; 3D electromagnetic analysis; 3D mechanical analysis; end winding vibration; finite element method; induction machine; rotary dynamic deformation; steady state magnetic forces; von Mises stresses; End winding; finite-element method; magnetic force; modal testing; vibration;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2010.2044043
Filename :
5427038
Link To Document :
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