Forced Vibrations of Pre-Stressed Sandwich Plate-Strip with Elastic Layers and Piezoelectric Core
The dynamical stress field in a sandwich plate-strip is mathematically modeled using the piecewise-homogeneous body model and the three-dimensional linearized theory of electro-elastic waves in initially stressed bodies. The plate consists of a piezoelectric core perfectly bonded to elastic layers w...
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Published in | International applied mechanics Vol. 54; no. 4; pp. 480 - 493 |
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Main Author | |
Format | Journal Article |
Language | English |
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New York
Springer US
01.07.2018
Springer Springer Nature B.V |
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Online Access | Get full text |
ISSN | 1063-7095 1573-8582 |
DOI | 10.1007/s10778-018-0901-3 |
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Abstract | The dynamical stress field in a sandwich plate-strip is mathematically modeled using the piecewise-homogeneous body model and the three-dimensional linearized theory of electro-elastic waves in initially stressed bodies. The plate consists of a piezoelectric core perfectly bonded to elastic layers with initial stress, rests on a rigid foundation, and is subject to harmonic force. It is assumed that the piezoelectric material is poled perpendicularly to the free surface of the body. The governing system of partial differential equations of motion is solved by the finite-element method. The numerical results are presented, illustrating the effect of certain relationships of the problem of the propagation of stresses and electric displacements at the interfaces between the elastic layers and the piezoelectric core and between the plate-strip and the rigid foundation. The effect of the initial stress parameter and a change in the thickness of the piezoelectric core on the frequency response of the plate-strip is studied. |
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AbstractList | The dynamical stress field in a sandwich plate-strip is mathematically modeled using the piecewise-homogeneous body model and the three-dimensional linearized theory of electro-elastic waves in initially stressed bodies. The plate consists of a piezoelectric core perfectly bonded to elastic layers with initial stress, rests on a rigid foundation, and is subject to harmonic force. It is assumed that the piezoelectric material is poled perpendicularly to the free surface of the body. The governing system of partial differential equations of motion is solved by the finite-element method. The numerical results are presented, illustrating the effect of certain relationships of the problem of the propagation of stresses and electric displacements at the interfaces between the elastic layers and the piezoelectric core and between the plate-strip and the rigid foundation. The effect of the initial stress parameter and a change in the thickness of the piezoelectric core on the frequency response of the plate-strip is studied. The dynamical stress field in a sandwich plate-strip is mathematically modeled using the piecewise-homogeneous body model and the three-dimensional linearized theory of electro-elastic waves in initially stressed bodies. The plate consists of a piezoelectric core perfectly bonded to elastic layers with initial stress, rests on a rigid foundation, and is subject to harmonic force. It is assumed that the piezoelectric material is poled perpendicularly to the free surface of the body. The governing system of partial differential equations of motion is solved by the finite-element method. The numerical results are presented, illustrating the effect of certain relationships of the problem of the propagation of stresses and electric displacements at the interfaces between the elastic layers and the piezoelectric core and between the plate-strip and the rigid foundation. The effect of the initial stress parameter and a change in the thickness of the piezoelectric core on the frequency response of the plate-strip is studied. Keywords: piezoelectric core, finite-element method, harmonic force, sandwich plate-strip |
Audience | Academic |
Author | Dașdemir, A. |
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Cites_doi | 10.1016/S1359-8368(02)00035-5 10.1016/j.tws.2008.03.002 10.1016/j.ijmecsci.2005.01.005 10.1007/1-4020-3111-4 10.1016/j.compstruct.2012.04.010 10.1007/s40840-014-0047-3 10.1016/j.cma.2007.03.018 10.1016/j.compstruct.2016.03.026 10.1016/j.commatsci.2010.03.045 10.1016/j.camwa.2015.03.022 10.1016/j.compstruct.2009.04.029 10.1016/j.ijsolstr.2009.01.036 10.1016/j.apm.2013.02.051 10.1016/j.compstruct.2012.08.010 |
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Struct.200846111183119110.1016/j.tws.2008.03.002 – reference: TuTMThachLNQuocTHFinite element modeling for bending and vibration analysis of laminated and sandwich composite plates based on higher-order theoryComp. Mater. Sci.201049439039410.1016/j.commatsci.2010.03.045 – reference: ShahraeeniMShakeriRHasheminejadSMAn analytical solution for free and forced vibration of a piezoelectric laminated plate coupled with an acoustic enclosureComput. Math. Appl.2015691113291341333904510.1016/j.camwa.2015.03.022 – reference: DașdemirAErözMMathematical modeling of dynamical stress field problem for a pre-stressed bi-layered plate-stripBull. Malays. Math. Sci. Soc.2015382733760332373810.1007/s40840-014-0047-3 – volume: 33 start-page: 505 issue: 7 year: 2002 ident: 901_CR2 publication-title: Composites Part B: Engineering doi: 10.1016/S1359-8368(02)00035-5 – volume: 46 start-page: 1183 issue: 11 year: 2008 ident: 901_CR5 publication-title: Thin. Wall. 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SubjectTerms | Analysis Applications of Mathematics Classical Mechanics Elastic layers Elastic waves Equations of motion Finite element method Forced vibration Free surfaces Frequency response Initial stresses Mathematical models Partial differential equations Physics Physics and Astronomy Piezoelectricity Stress propagation Strip Three dimensional models Vibration (Physics) |
Title | Forced Vibrations of Pre-Stressed Sandwich Plate-Strip with Elastic Layers and Piezoelectric Core |
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