Numerical Study of Vibro-Acoustic Responses of Un-Baffled Multi-Layered Composite Structure under Various End Conditions and Experimental Validation

Abstract This article presents the vibro-acoustic modeling and analysis of un-baffled laminated composite flat panels subjected to harmonic point load under various support conditions. The frequency values of the panel are obtained by using simulation model through the commercial finite element pack...

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Main Authors: Nitin Sharma, Trupti Ranjan Mahapatra, Subrata Kumar Panda
Format: Article
Language:English
Published: Marcílio Alves
Series:Latin American Journal of Solids and Structures
Subjects:
SPL
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252017000801547&lng=en&tlng=en
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spelling doaj-bd0b70474bfc49b98454c8fda018b13b2020-11-24T20:58:22ZengMarcílio AlvesLatin American Journal of Solids and Structures1679-78251481547156810.1590/1679-78253830S1679-78252017000801547Numerical Study of Vibro-Acoustic Responses of Un-Baffled Multi-Layered Composite Structure under Various End Conditions and Experimental ValidationNitin SharmaTrupti Ranjan MahapatraSubrata Kumar PandaAbstract This article presents the vibro-acoustic modeling and analysis of un-baffled laminated composite flat panels subjected to harmonic point load under various support conditions. The frequency values of the panel are obtained by using simulation model through the commercial finite element package (ANSYS) via batch input technique. Initially, the rate of convergence of the current simulation results is established by solving different examples under various edge supports. Further, the natural frequencies and corresponding modes are computed and compared with available published and experimentally obtained values. Then, the modal values are exported to LMS Virtual.Lab environment for the computation of acoustic responses of the vibrating laminated plate structure. Further, an indirect boundary element approach has been adopted to extract the coupled vibro-acoustic responses. Subsequently, the radiated sound power of the structure and the sound pressure level within the acoustic medium are computed using the present scheme and compared with the published numerical results and in-house experimental data, respectively. Finally, a comprehensive study has been performed to highlight the effect of different structural parameters (thickness ratio, aspect ratio, modular ratio and lay-up scheme), support conditions and the composite properties on the acoustic radiation responses of the laminated plate structure.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252017000801547&lng=en&tlng=enLaminated compositeModal analysisIndirect boundary element methodSPLRadiated sound powerExperimental analysis
collection DOAJ
language English
format Article
sources DOAJ
author Nitin Sharma
Trupti Ranjan Mahapatra
Subrata Kumar Panda
spellingShingle Nitin Sharma
Trupti Ranjan Mahapatra
Subrata Kumar Panda
Numerical Study of Vibro-Acoustic Responses of Un-Baffled Multi-Layered Composite Structure under Various End Conditions and Experimental Validation
Latin American Journal of Solids and Structures
Laminated composite
Modal analysis
Indirect boundary element method
SPL
Radiated sound power
Experimental analysis
author_facet Nitin Sharma
Trupti Ranjan Mahapatra
Subrata Kumar Panda
author_sort Nitin Sharma
title Numerical Study of Vibro-Acoustic Responses of Un-Baffled Multi-Layered Composite Structure under Various End Conditions and Experimental Validation
title_short Numerical Study of Vibro-Acoustic Responses of Un-Baffled Multi-Layered Composite Structure under Various End Conditions and Experimental Validation
title_full Numerical Study of Vibro-Acoustic Responses of Un-Baffled Multi-Layered Composite Structure under Various End Conditions and Experimental Validation
title_fullStr Numerical Study of Vibro-Acoustic Responses of Un-Baffled Multi-Layered Composite Structure under Various End Conditions and Experimental Validation
title_full_unstemmed Numerical Study of Vibro-Acoustic Responses of Un-Baffled Multi-Layered Composite Structure under Various End Conditions and Experimental Validation
title_sort numerical study of vibro-acoustic responses of un-baffled multi-layered composite structure under various end conditions and experimental validation
publisher Marcílio Alves
series Latin American Journal of Solids and Structures
issn 1679-7825
description Abstract This article presents the vibro-acoustic modeling and analysis of un-baffled laminated composite flat panels subjected to harmonic point load under various support conditions. The frequency values of the panel are obtained by using simulation model through the commercial finite element package (ANSYS) via batch input technique. Initially, the rate of convergence of the current simulation results is established by solving different examples under various edge supports. Further, the natural frequencies and corresponding modes are computed and compared with available published and experimentally obtained values. Then, the modal values are exported to LMS Virtual.Lab environment for the computation of acoustic responses of the vibrating laminated plate structure. Further, an indirect boundary element approach has been adopted to extract the coupled vibro-acoustic responses. Subsequently, the radiated sound power of the structure and the sound pressure level within the acoustic medium are computed using the present scheme and compared with the published numerical results and in-house experimental data, respectively. Finally, a comprehensive study has been performed to highlight the effect of different structural parameters (thickness ratio, aspect ratio, modular ratio and lay-up scheme), support conditions and the composite properties on the acoustic radiation responses of the laminated plate structure.
topic Laminated composite
Modal analysis
Indirect boundary element method
SPL
Radiated sound power
Experimental analysis
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252017000801547&lng=en&tlng=en
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AT subratakumarpanda numericalstudyofvibroacousticresponsesofunbaffledmultilayeredcompositestructureundervariousendconditionsandexperimentalvalidation
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