Response analysis and control of plates induced by piezoelectric actuators using finite element method

In this article, the shape deformation of the plate bonded to the piezoelectric actuators and sensors is analyzed using the finite element method, and then controlled by an algorithm. It expresses the need to conduct the comparison between non-controllable and controlled ways with low-order finite...

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Main Authors: Thien M. Tran, Trieu L. Vo, Son H. Nguyen
Format: Article
Language:English
Published: Publishing House for Science and Technology 2025-01-01
Series:Vietnam Journal of Mechanics
Subjects:
Online Access:https://vjs.ac.vn/index.php/vjmech/article/view/21276
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author Thien M. Tran
Trieu L. Vo
Son H. Nguyen
author_facet Thien M. Tran
Trieu L. Vo
Son H. Nguyen
author_sort Thien M. Tran
collection DOAJ
description In this article, the shape deformation of the plate bonded to the piezoelectric actuators and sensors is analyzed using the finite element method, and then controlled by an algorithm. It expresses the need to conduct the comparison between non-controllable and controlled ways with low-order finite element methods because of the low cost of investigation. The proposed method is investigated in three cases studied to compare and prove the feasibility and verification. To do these tasks, the effects of coupling between the electric and mechanical properties of piezoelectric materials draw significant attention to the material’s potential applications such as actuators and sensors. Firstly, a rectangular piezoelectric actuator with symmetrically bonded three sensors is considered. The piezoelectric actuator of the injector is implemented in the second experiment. Finally, this study is applied to control the diving board in diving sports. As the simulated results, the deformed shape of piezoelectric actuators can be computed accurately using the finite element method, demonstrating the relation between the central displacement of the piezoelectric actuator in the injector and the voltage level, being linear. An algorithm controls the shape and position of sheet metal to make a foundation and premises for the empirical process and applies it in production.
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institution OA Journals
issn 0866-7136
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language English
publishDate 2025-01-01
publisher Publishing House for Science and Technology
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series Vietnam Journal of Mechanics
spelling doaj-art-5df7e6f35e0b46e2b4a57a803c0ef4872025-08-20T02:00:42ZengPublishing House for Science and TechnologyVietnam Journal of Mechanics0866-71362815-58822025-01-0110.15625/0866-7136/21276Response analysis and control of plates induced by piezoelectric actuators using finite element methodThien M. Tran0https://orcid.org/0000-0003-3465-5905Trieu L. Vo1Son H. Nguyen2https://orcid.org/0000-0002-9343-9164\(^1\) Department of Mechatronics, Faculty of Mechanical Engineering, Ho Chi Minh City University of Technology and Education (HCMUTE), Ho Chi Minh City, Vietnam\(^2\) Ho Chi Minh City University of Technology and Education (HCMUTE), Ho Chi Minh City, Vietnam\(^3\) Institute of Applied Technology and Sustainable Development, Nguyen Tat Thanh University, Ho Chi Minh City, Vietnam In this article, the shape deformation of the plate bonded to the piezoelectric actuators and sensors is analyzed using the finite element method, and then controlled by an algorithm. It expresses the need to conduct the comparison between non-controllable and controlled ways with low-order finite element methods because of the low cost of investigation. The proposed method is investigated in three cases studied to compare and prove the feasibility and verification. To do these tasks, the effects of coupling between the electric and mechanical properties of piezoelectric materials draw significant attention to the material’s potential applications such as actuators and sensors. Firstly, a rectangular piezoelectric actuator with symmetrically bonded three sensors is considered. The piezoelectric actuator of the injector is implemented in the second experiment. Finally, this study is applied to control the diving board in diving sports. As the simulated results, the deformed shape of piezoelectric actuators can be computed accurately using the finite element method, demonstrating the relation between the central displacement of the piezoelectric actuator in the injector and the voltage level, being linear. An algorithm controls the shape and position of sheet metal to make a foundation and premises for the empirical process and applies it in production. https://vjs.ac.vn/index.php/vjmech/article/view/21276piezoelectric actuatorpiezoelectric sensorplate theorypiezoelectric injectors
spellingShingle Thien M. Tran
Trieu L. Vo
Son H. Nguyen
Response analysis and control of plates induced by piezoelectric actuators using finite element method
Vietnam Journal of Mechanics
piezoelectric actuator
piezoelectric sensor
plate theory
piezoelectric injectors
title Response analysis and control of plates induced by piezoelectric actuators using finite element method
title_full Response analysis and control of plates induced by piezoelectric actuators using finite element method
title_fullStr Response analysis and control of plates induced by piezoelectric actuators using finite element method
title_full_unstemmed Response analysis and control of plates induced by piezoelectric actuators using finite element method
title_short Response analysis and control of plates induced by piezoelectric actuators using finite element method
title_sort response analysis and control of plates induced by piezoelectric actuators using finite element method
topic piezoelectric actuator
piezoelectric sensor
plate theory
piezoelectric injectors
url https://vjs.ac.vn/index.php/vjmech/article/view/21276
work_keys_str_mv AT thienmtran responseanalysisandcontrolofplatesinducedbypiezoelectricactuatorsusingfiniteelementmethod
AT trieulvo responseanalysisandcontrolofplatesinducedbypiezoelectricactuatorsusingfiniteelementmethod
AT sonhnguyen responseanalysisandcontrolofplatesinducedbypiezoelectricactuatorsusingfiniteelementmethod