On vibration analysis of functionally graded carbon nanotube reinforced magneto-electro-elastic plates with different electro-magnetic conditions using higher order finite element methods

This article deals with evaluating the frequency response of functionally graded carbon nanotube reinforced magneto-electro-elastic (FG-CNTMEE) plates subjected to open and closed electro-magnetic circuit conditions. In this regard finite element formulation has been derived. The plate kinematics ad...

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Main Authors: M. Vinyas, D. Harursampath, S.C. Kattimani
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2021-02-01
Series:Defence Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214914720300647
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spelling doaj-18f8a07d554d4378af40aae2b525c38e2021-05-03T02:41:24ZengKeAi Communications Co., Ltd.Defence Technology2214-91472021-02-01171287303On vibration analysis of functionally graded carbon nanotube reinforced magneto-electro-elastic plates with different electro-magnetic conditions using higher order finite element methodsM. Vinyas0D. Harursampath1S.C. Kattimani2Nonlinear Multifunctional Composites Analysis and Design (NMCAD) Laboratory, Department of Aerospace Engineering, Indian Institute of Science, Bangalore, 560012, India; Corresponding author. Department of Aerospace Engineering, Indian Institute of Science (IISc), Bangalore, India, 560012.Nonlinear Multifunctional Composites Analysis and Design (NMCAD) Laboratory, Department of Aerospace Engineering, Indian Institute of Science, Bangalore, 560012, IndiaDepartment of Mechanical Engineering, National Institute of Technology Karnataka, Surathkal, 575025, IndiaThis article deals with evaluating the frequency response of functionally graded carbon nanotube reinforced magneto-electro-elastic (FG-CNTMEE) plates subjected to open and closed electro-magnetic circuit conditions. In this regard finite element formulation has been derived. The plate kinematics adjudged via higher order shear deformation theory (HSDT) is considered for evaluation. The equations of motion are obtained with the help of Hamilton’s principle and solved using condensation technique. It is found that the convergence and accuracy of the present FE formulation is very good to address the vibration problem of FG-CNTMEE plate. For the first time, frequency response analysis of FG-CNTMEE plates considering the effect of various circuit conditions associated with parameters such as CNT distributions, volume fraction, skew angle, aspect ratio, length-to-thickness ratio and coupling fields has been carried out. The results of this article can serve as benchmark for future development and analysis of smart structures.http://www.sciencedirect.com/science/article/pii/S2214914720300647Carbon nanotubeMagneto-electro-elasticHigher order shear deformation theoryCoupled frequencyElectro-magnetic conditions
collection DOAJ
language English
format Article
sources DOAJ
author M. Vinyas
D. Harursampath
S.C. Kattimani
spellingShingle M. Vinyas
D. Harursampath
S.C. Kattimani
On vibration analysis of functionally graded carbon nanotube reinforced magneto-electro-elastic plates with different electro-magnetic conditions using higher order finite element methods
Defence Technology
Carbon nanotube
Magneto-electro-elastic
Higher order shear deformation theory
Coupled frequency
Electro-magnetic conditions
author_facet M. Vinyas
D. Harursampath
S.C. Kattimani
author_sort M. Vinyas
title On vibration analysis of functionally graded carbon nanotube reinforced magneto-electro-elastic plates with different electro-magnetic conditions using higher order finite element methods
title_short On vibration analysis of functionally graded carbon nanotube reinforced magneto-electro-elastic plates with different electro-magnetic conditions using higher order finite element methods
title_full On vibration analysis of functionally graded carbon nanotube reinforced magneto-electro-elastic plates with different electro-magnetic conditions using higher order finite element methods
title_fullStr On vibration analysis of functionally graded carbon nanotube reinforced magneto-electro-elastic plates with different electro-magnetic conditions using higher order finite element methods
title_full_unstemmed On vibration analysis of functionally graded carbon nanotube reinforced magneto-electro-elastic plates with different electro-magnetic conditions using higher order finite element methods
title_sort on vibration analysis of functionally graded carbon nanotube reinforced magneto-electro-elastic plates with different electro-magnetic conditions using higher order finite element methods
publisher KeAi Communications Co., Ltd.
series Defence Technology
issn 2214-9147
publishDate 2021-02-01
description This article deals with evaluating the frequency response of functionally graded carbon nanotube reinforced magneto-electro-elastic (FG-CNTMEE) plates subjected to open and closed electro-magnetic circuit conditions. In this regard finite element formulation has been derived. The plate kinematics adjudged via higher order shear deformation theory (HSDT) is considered for evaluation. The equations of motion are obtained with the help of Hamilton’s principle and solved using condensation technique. It is found that the convergence and accuracy of the present FE formulation is very good to address the vibration problem of FG-CNTMEE plate. For the first time, frequency response analysis of FG-CNTMEE plates considering the effect of various circuit conditions associated with parameters such as CNT distributions, volume fraction, skew angle, aspect ratio, length-to-thickness ratio and coupling fields has been carried out. The results of this article can serve as benchmark for future development and analysis of smart structures.
topic Carbon nanotube
Magneto-electro-elastic
Higher order shear deformation theory
Coupled frequency
Electro-magnetic conditions
url http://www.sciencedirect.com/science/article/pii/S2214914720300647
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AT dharursampath onvibrationanalysisoffunctionallygradedcarbonnanotubereinforcedmagnetoelectroelasticplateswithdifferentelectromagneticconditionsusinghigherorderfiniteelementmethods
AT sckattimani onvibrationanalysisoffunctionallygradedcarbonnanotubereinforcedmagnetoelectroelasticplateswithdifferentelectromagneticconditionsusinghigherorderfiniteelementmethods
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