Nonlinear Forced Response of Electromechanical Integrated Toroidal Drive to Coupled Excitation

The electric excitation and the parameter excitation from mesh stiffness fluctuation are analyzed. The forced response equations of the drive system to the coupled excitations are presented. For the exciting frequencies far from and near natural frequencies, the forced responses of the drive system...

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Main Authors: Lizhong Xu, Fen Wang
Format: Article
Language:English
Published: Wiley 2012-01-01
Series:The Scientific World Journal
Online Access:http://dx.doi.org/10.1100/2012/743138
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author Lizhong Xu
Fen Wang
author_facet Lizhong Xu
Fen Wang
author_sort Lizhong Xu
collection DOAJ
description The electric excitation and the parameter excitation from mesh stiffness fluctuation are analyzed. The forced response equations of the drive system to the coupled excitations are presented. For the exciting frequencies far from and near natural frequencies, the forced responses of the drive system to the coupled excitations are investigated. Results show that the nonlinear forced responses of the drive system to the coupled excitations change periodically and unsteadily; the time period of the nonlinear forced responses depends on the frequencies of the electric excitation, the mesh parameter excitation, and the nonlinear natural frequencies of the drive system; in order to improve the dynamics performance of the drive system, the frequencies of the electric excitations should not be taken as integral multiple of the mesh parameter exciting frequency.
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spelling doaj-art-fb62e07b29684827b41592cd1e2f44492025-02-03T01:20:40ZengWileyThe Scientific World Journal1537-744X2012-01-01201210.1100/2012/743138743138Nonlinear Forced Response of Electromechanical Integrated Toroidal Drive to Coupled ExcitationLizhong Xu0Fen Wang1Mechanical Engineering Institute, Yanshan University, Qinhuangdao 066004, ChinaMechanical Engineering Institute, Yanshan University, Qinhuangdao 066004, ChinaThe electric excitation and the parameter excitation from mesh stiffness fluctuation are analyzed. The forced response equations of the drive system to the coupled excitations are presented. For the exciting frequencies far from and near natural frequencies, the forced responses of the drive system to the coupled excitations are investigated. Results show that the nonlinear forced responses of the drive system to the coupled excitations change periodically and unsteadily; the time period of the nonlinear forced responses depends on the frequencies of the electric excitation, the mesh parameter excitation, and the nonlinear natural frequencies of the drive system; in order to improve the dynamics performance of the drive system, the frequencies of the electric excitations should not be taken as integral multiple of the mesh parameter exciting frequency.http://dx.doi.org/10.1100/2012/743138
spellingShingle Lizhong Xu
Fen Wang
Nonlinear Forced Response of Electromechanical Integrated Toroidal Drive to Coupled Excitation
The Scientific World Journal
title Nonlinear Forced Response of Electromechanical Integrated Toroidal Drive to Coupled Excitation
title_full Nonlinear Forced Response of Electromechanical Integrated Toroidal Drive to Coupled Excitation
title_fullStr Nonlinear Forced Response of Electromechanical Integrated Toroidal Drive to Coupled Excitation
title_full_unstemmed Nonlinear Forced Response of Electromechanical Integrated Toroidal Drive to Coupled Excitation
title_short Nonlinear Forced Response of Electromechanical Integrated Toroidal Drive to Coupled Excitation
title_sort nonlinear forced response of electromechanical integrated toroidal drive to coupled excitation
url http://dx.doi.org/10.1100/2012/743138
work_keys_str_mv AT lizhongxu nonlinearforcedresponseofelectromechanicalintegratedtoroidaldrivetocoupledexcitation
AT fenwang nonlinearforcedresponseofelectromechanicalintegratedtoroidaldrivetocoupledexcitation