An improved MITC3 element for vibration response analysis of piezoelectric functionally graded porous plates
The main goal of this paper is to improve the mixed interpolation of tensorial components triangular (MITC3) by using the edge-based smoothed finite element method (ES-FEM), so-called ES-MITC3, for analyzing the vibration of piezoelectric functionally graded porous (p-FGP) plates subjected to dynami...
Main Authors: | , , , |
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Format: | Article |
Language: | English |
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Elsevier
2023-12-01
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Series: | Forces in Mechanics |
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Online Access: | http://www.sciencedirect.com/science/article/pii/S2666359723000665 |
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author | Ngoc-Tu Do Trung Thanh Tran Trung Nguyen-Thoi Quoc Hoa Pham |
author_facet | Ngoc-Tu Do Trung Thanh Tran Trung Nguyen-Thoi Quoc Hoa Pham |
author_sort | Ngoc-Tu Do |
collection | DOAJ |
description | The main goal of this paper is to improve the mixed interpolation of tensorial components triangular (MITC3) by using the edge-based smoothed finite element method (ES-FEM), so-called ES-MITC3, for analyzing the vibration of piezoelectric functionally graded porous (p-FGP) plates subjected to dynamic loading. The material properties of the FGP core vary through thickness with uneven porosity distribution. Besides, the linear relationship between the electric potential and the thickness of the piezoelectric sublayer is taken into account. A closed-loop control algorithm is employed to actively control the vibration of p-FGP plates, through feedback from displacement and velocity. The performance of the proposed method is verified through comparative examples. Finally, the authors hope that the present method can be effectively applied to many smart material models in a multiphysics environment and contribute to understanding texture control by piezoelectric materials through numerical results. |
first_indexed | 2024-03-08T23:10:25Z |
format | Article |
id | doaj.art-721842a398bc4c1eb49d4eb2d442393d |
institution | Directory Open Access Journal |
issn | 2666-3597 |
language | English |
last_indexed | 2024-03-08T23:10:25Z |
publishDate | 2023-12-01 |
publisher | Elsevier |
record_format | Article |
series | Forces in Mechanics |
spelling | doaj.art-721842a398bc4c1eb49d4eb2d442393d2023-12-15T07:26:04ZengElsevierForces in Mechanics2666-35972023-12-0113100231An improved MITC3 element for vibration response analysis of piezoelectric functionally graded porous platesNgoc-Tu Do0Trung Thanh Tran1Trung Nguyen-Thoi2Quoc Hoa Pham3Faculty of Mechanical Engineering, Hanoi University of Industry, Hanoi, VietnamFaculty of Mechanical Engineering, Le Quy Don Technical University, Hanoi, VietnamLaboratory for Applied and Industrial Mathematics, Institute for Computational Science and Artificial Intelligence, Van Lang University, Ho Chi Minh City, Vietnam; Faculty of Mechanical-Electrical and Computer Engineering, School of Technology, Van Lang University, Ho Chi Minh City, VietnamFaculty of Engineering and Technology, Nguyen Tat Thanh University, Ho Chi Minh City, Vietnam; Corresponding author.The main goal of this paper is to improve the mixed interpolation of tensorial components triangular (MITC3) by using the edge-based smoothed finite element method (ES-FEM), so-called ES-MITC3, for analyzing the vibration of piezoelectric functionally graded porous (p-FGP) plates subjected to dynamic loading. The material properties of the FGP core vary through thickness with uneven porosity distribution. Besides, the linear relationship between the electric potential and the thickness of the piezoelectric sublayer is taken into account. A closed-loop control algorithm is employed to actively control the vibration of p-FGP plates, through feedback from displacement and velocity. The performance of the proposed method is verified through comparative examples. Finally, the authors hope that the present method can be effectively applied to many smart material models in a multiphysics environment and contribute to understanding texture control by piezoelectric materials through numerical results.http://www.sciencedirect.com/science/article/pii/S2666359723000665Smoothed finite element methodsFunctionally graded porous plateES-MITC3Vibration controlPiezoelectric |
spellingShingle | Ngoc-Tu Do Trung Thanh Tran Trung Nguyen-Thoi Quoc Hoa Pham An improved MITC3 element for vibration response analysis of piezoelectric functionally graded porous plates Forces in Mechanics Smoothed finite element methods Functionally graded porous plate ES-MITC3 Vibration control Piezoelectric |
title | An improved MITC3 element for vibration response analysis of piezoelectric functionally graded porous plates |
title_full | An improved MITC3 element for vibration response analysis of piezoelectric functionally graded porous plates |
title_fullStr | An improved MITC3 element for vibration response analysis of piezoelectric functionally graded porous plates |
title_full_unstemmed | An improved MITC3 element for vibration response analysis of piezoelectric functionally graded porous plates |
title_short | An improved MITC3 element for vibration response analysis of piezoelectric functionally graded porous plates |
title_sort | improved mitc3 element for vibration response analysis of piezoelectric functionally graded porous plates |
topic | Smoothed finite element methods Functionally graded porous plate ES-MITC3 Vibration control Piezoelectric |
url | http://www.sciencedirect.com/science/article/pii/S2666359723000665 |
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