DocumentCode :
2686027
Title :
Modelling of non-contact ultrasonic motor by means of boundary element method
Author :
Stepanenko, D.A. ; Minchenya, V.V. ; Zimmermann, Karsten ; Asimov, R.M. ; Minchenya, V.T.
Author_Institution :
Belarussian Nat. Tech. Univ., Minsk, Belarus
fYear :
2012
fDate :
7-10 Oct. 2012
Firstpage :
2722
Lastpage :
2725
Abstract :
Objective of this work is to study possibility of application of boundary element method (BEM) for modelling of non-contact ultrasonic motor (USM). Efficiency of modelling using BEM is studied on non-contact USM with asymmetric design of rotor based on standing-wave flexural vibrations of ring-shaped stator. Modelling is implemented using open source software OpenBEM. Results of modelling show that BEM can be used as efficient tool for design and modelling of USM complementary to finite element method (FEM) and experimental methods. Particularly, application of BEM provided additional results (in comparison with FEM) on effect of asymmetry on operation of the motor. Particularly, it is shown that non-periodic motion of the rotor (continuous rotary motion) is possible only in the case, when two kinds of asymmetry are present: structural asymmetry of the rotor and asymmetry of vibratory excitation of the stator.
Keywords :
boundary-elements methods; finite element analysis; power engineering computing; stators; ultrasonic motors; vibrations; BEM; FEM; USM; USM modelling; boundary element method; continuous rotary motion; finite element method; noncontact ultrasonic motor modelling; ring-shaped stator; rotor asymmetric design; software OpenBEM; standing-wave flexural vibrations; structural asymmetry; vibratory excitation; Acoustics; Finite element analysis; Induction motors; Mathematical model; Rotors; Stators; Vibrations;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium (IUS), 2012 IEEE International
Conference_Location :
Dresden
ISSN :
1948-5719
Print_ISBN :
978-1-4673-4561-3
Type :
conf
DOI :
10.1109/ULTSYM.2012.0682
Filename :
6561926
Link To Document :
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