Finite element simulation of electro-mechanical impedance technique
Electro-mechanical impedance method is emerging as an important and powerful technique for structural health monitoring (SHM). Active elements of the technique are Piezoelectric Wafer Active Sensor (PWAS) bonded on the structure. Modeling and simulation of PWAS and host structure play an important r...
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iium-388652018-05-22T04:58:53Z http://irep.iium.edu.my/38865/ Finite element simulation of electro-mechanical impedance technique Tahmasebpour, Kamyar Hrairi, Meftah Shaik Dawood, Mohd. Sultan Ibrahim TA349 Mechanics of engineering. Applied mechanics Electro-mechanical impedance method is emerging as an important and powerful technique for structural health monitoring (SHM). Active elements of the technique are Piezoelectric Wafer Active Sensor (PWAS) bonded on the structure. Modeling and simulation of PWAS and host structure play an important role in the SHM applications with PWAS. For decades finite element method has been extensively applied in the analysis of piezoelectric materials and structures. In this paper, piezoelectric element and a host metallic structure were modeled using Ansys finite element software to find the Electromechanical Impedance (EMI) according to the signal frequency. After that, the EMI signature of the beam was found for different position of the PWAS patch. The study shows that sensor position may directly control the EMI signature. 2015 Conference or Workshop Item NonPeerReviewed application/pdf en http://irep.iium.edu.my/38865/1/ICAMME2152_Paper.pdf application/pdf en http://irep.iium.edu.my/38865/6/ICAMME_2014_Program_%28Update_22_Sept_2014%29.pdf Tahmasebpour, Kamyar and Hrairi, Meftah and Shaik Dawood, Mohd. Sultan Ibrahim (2015) Finite element simulation of electro-mechanical impedance technique. In: International Conference on Advances in Manufacturing and Materials Engineering (ICAMME 2014), 23-25 September 2014, Kuala Lumpur. (Unpublished) |
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TA349 Mechanics of engineering. Applied mechanics |
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TA349 Mechanics of engineering. Applied mechanics Tahmasebpour, Kamyar Hrairi, Meftah Shaik Dawood, Mohd. Sultan Ibrahim Finite element simulation of electro-mechanical impedance technique |
description |
Electro-mechanical impedance method is emerging as an important and powerful technique for structural health monitoring (SHM). Active elements of the technique are Piezoelectric Wafer Active Sensor (PWAS) bonded on the structure. Modeling and simulation of PWAS and host structure play an important role in the SHM applications with PWAS. For decades finite element method has been extensively applied in the analysis of piezoelectric materials and structures. In this paper, piezoelectric element and a host metallic structure were modeled using Ansys finite element software to find the Electromechanical Impedance (EMI) according to the signal frequency. After that, the EMI signature of the beam was found for different position of the PWAS patch. The study shows that sensor position may directly control the EMI signature. |
format |
Conference or Workshop Item |
author |
Tahmasebpour, Kamyar Hrairi, Meftah Shaik Dawood, Mohd. Sultan Ibrahim |
author_facet |
Tahmasebpour, Kamyar Hrairi, Meftah Shaik Dawood, Mohd. Sultan Ibrahim |
author_sort |
Tahmasebpour, Kamyar |
title |
Finite element simulation of electro-mechanical impedance technique |
title_short |
Finite element simulation of electro-mechanical impedance technique |
title_full |
Finite element simulation of electro-mechanical impedance technique |
title_fullStr |
Finite element simulation of electro-mechanical impedance technique |
title_full_unstemmed |
Finite element simulation of electro-mechanical impedance technique |
title_sort |
finite element simulation of electro-mechanical impedance technique |
publishDate |
2015 |
url |
http://irep.iium.edu.my/38865/ http://irep.iium.edu.my/38865/1/ICAMME2152_Paper.pdf http://irep.iium.edu.my/38865/6/ICAMME_2014_Program_%28Update_22_Sept_2014%29.pdf |
first_indexed |
2023-09-18T20:55:50Z |
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2023-09-18T20:55:50Z |
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1777410298004635648 |