Dynamic Analysis of a Micro Beam-Based Tactile Sensor Actuated by Fringing Electrostatic Fields

A new kind of fringing electrostatic actuation mode is developed. In this new actuation mode, the expression of fringing electrostatic force is found. The nonlinear dynamic analysis of this new actuation mode is presented by using the Method of Multiple Scales. An experiment is designed to observe t...

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Main Authors: Zhichong Wang, Qichang Zhang, Wei Wang, Jianxin Han
Format: Article
Language:English
Published: MDPI AG 2019-05-01
Series:Micromachines
Subjects:
Online Access:https://www.mdpi.com/2072-666X/10/5/324
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author Zhichong Wang
Qichang Zhang
Wei Wang
Jianxin Han
author_facet Zhichong Wang
Qichang Zhang
Wei Wang
Jianxin Han
author_sort Zhichong Wang
collection DOAJ
description A new kind of fringing electrostatic actuation mode is developed. In this new actuation mode, the expression of fringing electrostatic force is found. The nonlinear dynamic analysis of this new actuation mode is presented by using the Method of Multiple Scales. An experiment is designed to observe the dynamic behaviors of this structure. It is observed that the resonance frequency rises with the increase of the initial displacement and the decrease of the slit gap; a smaller slit gap makes marked change of the resonance frequency in the same range of the initial displacement; the increase of the vibration amplitude is linear with the increase of the initial displacement; the fringing electrostatic force has a larger impact on the frequency response of the nonlinear vibration when the initial displacement, the beam length and the actuated voltage are larger. This new fringing electrostatic actuation mode can be used in a micro tactile sensor. The results of dynamic analysis can provide support for sensor design. Based on the dynamic investigations into the micro cantilevered beam actuated by fringing electrostatic force; three usage patterns of the sensor are introduced as follows. Firstly, measuring resonance frequency of the micro beam can derive the initial displacement. Second, the initial displacement can be derived from vibration amplitude measurement. Third, jump phenomenon can be used to locate the initial displacement demand.
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spelling doaj.art-ab69e4531a764374aab60ba4b2f440fd2022-12-22T01:17:06ZengMDPI AGMicromachines2072-666X2019-05-0110532410.3390/mi10050324mi10050324Dynamic Analysis of a Micro Beam-Based Tactile Sensor Actuated by Fringing Electrostatic FieldsZhichong Wang0Qichang Zhang1Wei Wang2Jianxin Han3Department of Mechanics, School of Mechanical Engineering, Tianjin University, Tianjin 300072, ChinaDepartment of Mechanics, School of Mechanical Engineering, Tianjin University, Tianjin 300072, ChinaDepartment of Mechanics, School of Mechanical Engineering, Tianjin University, Tianjin 300072, ChinaTianjin Key Laboratory of Nonlinear Dynamics and Control, Tianjin University, Tianjin 300072, ChinaA new kind of fringing electrostatic actuation mode is developed. In this new actuation mode, the expression of fringing electrostatic force is found. The nonlinear dynamic analysis of this new actuation mode is presented by using the Method of Multiple Scales. An experiment is designed to observe the dynamic behaviors of this structure. It is observed that the resonance frequency rises with the increase of the initial displacement and the decrease of the slit gap; a smaller slit gap makes marked change of the resonance frequency in the same range of the initial displacement; the increase of the vibration amplitude is linear with the increase of the initial displacement; the fringing electrostatic force has a larger impact on the frequency response of the nonlinear vibration when the initial displacement, the beam length and the actuated voltage are larger. This new fringing electrostatic actuation mode can be used in a micro tactile sensor. The results of dynamic analysis can provide support for sensor design. Based on the dynamic investigations into the micro cantilevered beam actuated by fringing electrostatic force; three usage patterns of the sensor are introduced as follows. Firstly, measuring resonance frequency of the micro beam can derive the initial displacement. Second, the initial displacement can be derived from vibration amplitude measurement. Third, jump phenomenon can be used to locate the initial displacement demand.https://www.mdpi.com/2072-666X/10/5/324fringing electrostaticnonlinear dynamictactile sensor
spellingShingle Zhichong Wang
Qichang Zhang
Wei Wang
Jianxin Han
Dynamic Analysis of a Micro Beam-Based Tactile Sensor Actuated by Fringing Electrostatic Fields
Micromachines
fringing electrostatic
nonlinear dynamic
tactile sensor
title Dynamic Analysis of a Micro Beam-Based Tactile Sensor Actuated by Fringing Electrostatic Fields
title_full Dynamic Analysis of a Micro Beam-Based Tactile Sensor Actuated by Fringing Electrostatic Fields
title_fullStr Dynamic Analysis of a Micro Beam-Based Tactile Sensor Actuated by Fringing Electrostatic Fields
title_full_unstemmed Dynamic Analysis of a Micro Beam-Based Tactile Sensor Actuated by Fringing Electrostatic Fields
title_short Dynamic Analysis of a Micro Beam-Based Tactile Sensor Actuated by Fringing Electrostatic Fields
title_sort dynamic analysis of a micro beam based tactile sensor actuated by fringing electrostatic fields
topic fringing electrostatic
nonlinear dynamic
tactile sensor
url https://www.mdpi.com/2072-666X/10/5/324
work_keys_str_mv AT zhichongwang dynamicanalysisofamicrobeambasedtactilesensoractuatedbyfringingelectrostaticfields
AT qichangzhang dynamicanalysisofamicrobeambasedtactilesensoractuatedbyfringingelectrostaticfields
AT weiwang dynamicanalysisofamicrobeambasedtactilesensoractuatedbyfringingelectrostaticfields
AT jianxinhan dynamicanalysisofamicrobeambasedtactilesensoractuatedbyfringingelectrostaticfields