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Nonlinear Vibration of a Micro Piezoelectric Precision Drive System

A micro piezoelectric precision drive system is proposed, which is advantageous due its small size, large transmission ratio, and large output torque. The working principle of the proposed piezoelectric precision drive system is presented, and the nonlinear dynamic model and equations of the system...

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Detalles Bibliográficos
Autores principales: Li, Chong, Zhong, Wei, Fang, Jiwen, Sun, Lining
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6471449/
https://www.ncbi.nlm.nih.gov/pubmed/30813575
http://dx.doi.org/10.3390/mi10030159
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author Li, Chong
Zhong, Wei
Fang, Jiwen
Sun, Lining
author_facet Li, Chong
Zhong, Wei
Fang, Jiwen
Sun, Lining
author_sort Li, Chong
collection PubMed
description A micro piezoelectric precision drive system is proposed, which is advantageous due its small size, large transmission ratio, and large output torque. The working principle of the proposed piezoelectric precision drive system is presented, and the nonlinear dynamic model and equations of the system are established. Using the Linz Ted-Poincaré and perturbation methods, the nonlinear approximate solutions of the dynamic equations are calculated. The results indicate that the nonlinear intensity of the drive system is inversely proportional to the number of meshing movable teeth. It was also noted that the rotor is most affected by the nonlinear phenomenon. These results can be utilized both to optimize the dimensions of the piezoelectric precision drive system and to reduce the intensity of vibrations during operation.
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spelling pubmed-64714492019-04-27 Nonlinear Vibration of a Micro Piezoelectric Precision Drive System Li, Chong Zhong, Wei Fang, Jiwen Sun, Lining Micromachines (Basel) Article A micro piezoelectric precision drive system is proposed, which is advantageous due its small size, large transmission ratio, and large output torque. The working principle of the proposed piezoelectric precision drive system is presented, and the nonlinear dynamic model and equations of the system are established. Using the Linz Ted-Poincaré and perturbation methods, the nonlinear approximate solutions of the dynamic equations are calculated. The results indicate that the nonlinear intensity of the drive system is inversely proportional to the number of meshing movable teeth. It was also noted that the rotor is most affected by the nonlinear phenomenon. These results can be utilized both to optimize the dimensions of the piezoelectric precision drive system and to reduce the intensity of vibrations during operation. MDPI 2019-02-26 /pmc/articles/PMC6471449/ /pubmed/30813575 http://dx.doi.org/10.3390/mi10030159 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Li, Chong
Zhong, Wei
Fang, Jiwen
Sun, Lining
Nonlinear Vibration of a Micro Piezoelectric Precision Drive System
title Nonlinear Vibration of a Micro Piezoelectric Precision Drive System
title_full Nonlinear Vibration of a Micro Piezoelectric Precision Drive System
title_fullStr Nonlinear Vibration of a Micro Piezoelectric Precision Drive System
title_full_unstemmed Nonlinear Vibration of a Micro Piezoelectric Precision Drive System
title_short Nonlinear Vibration of a Micro Piezoelectric Precision Drive System
title_sort nonlinear vibration of a micro piezoelectric precision drive system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6471449/
https://www.ncbi.nlm.nih.gov/pubmed/30813575
http://dx.doi.org/10.3390/mi10030159
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