Characteristics of Response of Piezoelectric Actuators in Electron Flux Excitation

In this paper the working parameters of non-contact strain control for piezoelectric ceramics are evaluated. The piezoelectric material functions as an actuator that transforms electrical into mechanical energy, and the electrical input is carried out by electron flux on the positive surface. The sa...

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Main Authors: Philip C. Hadinata, John A. Main
Format: Article
Language:English
Published: ITB Journal Publisher 2003-11-01
Series:ITB Journal of Engineering Science
Subjects:
Online Access:http://journal.itb.ac.id/download.php?file=B03010.pdf&id=54&up=6
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spelling doaj-146f4e65fc8841f98b70ad19987aead82020-11-25T03:39:31ZengITB Journal PublisherITB Journal of Engineering Science1978-30512003-11-01352109123Characteristics of Response of Piezoelectric Actuators in Electron Flux ExcitationPhilip C. HadinataJohn A. MainIn this paper the working parameters of non-contact strain control for piezoelectric ceramics are evaluated. The piezoelectric material functions as an actuator that transforms electrical into mechanical energy, and the electrical input is carried out by electron flux on the positive surface. The sample is exposed to some quasi-static inputs, and its responses are recorded using strain gages. The data shows faster and more stable response in the positive regime, but significantly slower response with drift in the negative regime. An electron collector is introduced on the positive surface to enhance the response in the negative regime. Theoretical analyses of energy transfer and electron movements is discussed, and a string of working conditions for controlling the surface strain of piezoelectric material are given as conclusions.http://journal.itb.ac.id/download.php?file=B03010.pdf&id=54&up=6actuatorcontrolelectron fluxstrain
collection DOAJ
language English
format Article
sources DOAJ
author Philip C. Hadinata
John A. Main
spellingShingle Philip C. Hadinata
John A. Main
Characteristics of Response of Piezoelectric Actuators in Electron Flux Excitation
ITB Journal of Engineering Science
actuator
control
electron flux
strain
author_facet Philip C. Hadinata
John A. Main
author_sort Philip C. Hadinata
title Characteristics of Response of Piezoelectric Actuators in Electron Flux Excitation
title_short Characteristics of Response of Piezoelectric Actuators in Electron Flux Excitation
title_full Characteristics of Response of Piezoelectric Actuators in Electron Flux Excitation
title_fullStr Characteristics of Response of Piezoelectric Actuators in Electron Flux Excitation
title_full_unstemmed Characteristics of Response of Piezoelectric Actuators in Electron Flux Excitation
title_sort characteristics of response of piezoelectric actuators in electron flux excitation
publisher ITB Journal Publisher
series ITB Journal of Engineering Science
issn 1978-3051
publishDate 2003-11-01
description In this paper the working parameters of non-contact strain control for piezoelectric ceramics are evaluated. The piezoelectric material functions as an actuator that transforms electrical into mechanical energy, and the electrical input is carried out by electron flux on the positive surface. The sample is exposed to some quasi-static inputs, and its responses are recorded using strain gages. The data shows faster and more stable response in the positive regime, but significantly slower response with drift in the negative regime. An electron collector is introduced on the positive surface to enhance the response in the negative regime. Theoretical analyses of energy transfer and electron movements is discussed, and a string of working conditions for controlling the surface strain of piezoelectric material are given as conclusions.
topic actuator
control
electron flux
strain
url http://journal.itb.ac.id/download.php?file=B03010.pdf&id=54&up=6
work_keys_str_mv AT philipchadinata characteristicsofresponseofpiezoelectricactuatorsinelectronfluxexcitation
AT johnamain characteristicsofresponseofpiezoelectricactuatorsinelectronfluxexcitation
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