Modelling and Analysis of a New Piezoelectric Dynamic Balance Regulator

In this paper, a new piezoelectric dynamic balance regulator, which can be used in motorised spindle systems, is presented. The dynamic balancing adjustment mechanism is driven by an in-plane bending vibration from an annular piezoelectric stator excited by a high-frequency sinusoidal input voltage....

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Main Authors: Mu-Xun Xu, Xue-Song Mei, Zhe Du
Format: Article
Language:English
Published: MDPI AG 2012-11-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/12/11/14671
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author Mu-Xun Xu
Xue-Song Mei
Zhe Du
author_facet Mu-Xun Xu
Xue-Song Mei
Zhe Du
author_sort Mu-Xun Xu
collection DOAJ
description In this paper, a new piezoelectric dynamic balance regulator, which can be used in motorised spindle systems, is presented. The dynamic balancing adjustment mechanism is driven by an in-plane bending vibration from an annular piezoelectric stator excited by a high-frequency sinusoidal input voltage. This device has different construction, characteristics and operating principles than a conventional balance regulator. In this work, a dynamic model of the regulator is first developed using a detailed analytical method. Thereafter, MATLAB is employed to numerically simulate the relations between the dominant parameters and the characteristics of the regulator based on thedynamic model. Finally, experimental measurements are used to certify the validity of the dynamic model. Consequently, the mathematical model presented and analysed in this paper can be used as a tool for optimising the design of a piezoelectric dynamic balance regulator during steady state operation.
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spelling doaj.art-7a5820d703044f6e8d9e4cf7b525289e2022-12-22T02:19:33ZengMDPI AGSensors1424-82202012-11-011211146711469110.3390/s121114671Modelling and Analysis of a New Piezoelectric Dynamic Balance RegulatorMu-Xun XuXue-Song MeiZhe DuIn this paper, a new piezoelectric dynamic balance regulator, which can be used in motorised spindle systems, is presented. The dynamic balancing adjustment mechanism is driven by an in-plane bending vibration from an annular piezoelectric stator excited by a high-frequency sinusoidal input voltage. This device has different construction, characteristics and operating principles than a conventional balance regulator. In this work, a dynamic model of the regulator is first developed using a detailed analytical method. Thereafter, MATLAB is employed to numerically simulate the relations between the dominant parameters and the characteristics of the regulator based on thedynamic model. Finally, experimental measurements are used to certify the validity of the dynamic model. Consequently, the mathematical model presented and analysed in this paper can be used as a tool for optimising the design of a piezoelectric dynamic balance regulator during steady state operation.http://www.mdpi.com/1424-8220/12/11/14671dynamic modelbalance regulatorin-plane bending vibrationmotorised spindlepiezoelectric stator
spellingShingle Mu-Xun Xu
Xue-Song Mei
Zhe Du
Modelling and Analysis of a New Piezoelectric Dynamic Balance Regulator
Sensors
dynamic model
balance regulator
in-plane bending vibration
motorised spindle
piezoelectric stator
title Modelling and Analysis of a New Piezoelectric Dynamic Balance Regulator
title_full Modelling and Analysis of a New Piezoelectric Dynamic Balance Regulator
title_fullStr Modelling and Analysis of a New Piezoelectric Dynamic Balance Regulator
title_full_unstemmed Modelling and Analysis of a New Piezoelectric Dynamic Balance Regulator
title_short Modelling and Analysis of a New Piezoelectric Dynamic Balance Regulator
title_sort modelling and analysis of a new piezoelectric dynamic balance regulator
topic dynamic model
balance regulator
in-plane bending vibration
motorised spindle
piezoelectric stator
url http://www.mdpi.com/1424-8220/12/11/14671
work_keys_str_mv AT muxunxu modellingandanalysisofanewpiezoelectricdynamicbalanceregulator
AT xuesongmei modellingandanalysisofanewpiezoelectricdynamicbalanceregulator
AT zhedu modellingandanalysisofanewpiezoelectricdynamicbalanceregulator