Journal ArticleDOI
Sound radiation and transmission loss characteristics of a honeycomb sandwich panel with composite facings: Effect of inherent material damping
M.P. Arunkumar,M. Jagadeesh,Jeyaraj Pitchaimani,K. V. Gangadharan,Lenin Babu Mailan Chinnapandi +4 more
TLDR
In this article, the results of numerical studies carried out on vibro-acoustic and sound transmission loss behaviour of aluminium honeycomb core sandwich panel with fibre reinforced plastic facings were presented.About:
This article is published in Journal of Sound and Vibration.The article was published on 2016-11-24. It has received 62 citations till now. The article focuses on the topics: Sandwich panel & Sandwich-structured composite.read more
Citations
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Journal ArticleDOI
Numerical Analysis on Vibro-Acoustic Behavior of Honeycomb Core Sandwich Structure with FG-CNT-Reinforced Polymer Composite Facings
Journal ArticleDOI
Estimation of acoustic transmission loss for carbon honey comb panel with melamine foam
TL;DR: In this paper , the acoustic noise reduction of aluminum honeycomb/carbon face sheet sandwich panel with Melamine Foam (MF) lining of variable thicknesses (25 mm and 50 mm) is numerically estimated and then experimentally verified using impedance tube based on transfer matrix method.
Journal ArticleDOI
Analytical Investigation of Sound Radiation from Functionally Graded Thin Plates Based on Elemental Radiator Approach and Physical Neutral Surface
TL;DR: In this paper , the effects of the power-law index, elastic modulus ratio, different constituent materials, and damping loss factor on the sound radiation of a clamped thin, functionally graded material plate were analyzed.
Journal ArticleDOI
An exact solution for vibro-acoustic response of MEE composite plate
TL;DR: In this article , the authors presented an exact solution to predict vibro-acoustic characteristics of magneto-electro-elastic (MEE) composite plate using third-order shear deformation theory.
References
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Journal ArticleDOI
Damping studies in fiber-reinforced composites : a review
TL;DR: The status of research on damping in fiber-reinforced composite materials and structures with emphasis on polymer composites has been reviewed in this article, where the authors present damping studies involving macromechanical, micro-mechanical and viscoelastic (relaxation and creep) approaches.
Journal ArticleDOI
The strength characteristics of aluminum honeycomb sandwich panels
TL;DR: In this paper, a series of strength tests are carried out on aluminum honeycomb-cored sandwich panel specimen in three point bending, axial compression and lateral crushing loads and simplified theories are applied to analyze bending deformation, buckling/ultimate strength and crushing strength of honeycomb sandwich panels subject to the corresponding load component.
Journal ArticleDOI
Vibration and sound radiation of sandwich beams with honeycomb truss core
TL;DR: In this paper, a finite element model is developed to evaluate the structural and the acoustic behavior of the considered class of sandwich beams, and the model is formulated by employing dynamic shape functions, derived directly from the distributed parameter model of beam elements.
Book
Structures Technology for Future Aerospace Systems
TL;DR: An overview of structures technology for future aerospace systems is given in this article, focusing on developments in component technologies that will improve the vehicle performance, advance the technology exploitation process, and reduce system life-cycle costs.
Journal ArticleDOI
Vibration and acoustic response of a composite plate with inherent material damping in a thermal environment
TL;DR: In this article, the authors presented numerical studies on the vibration and acoustic response characteristics of a fiber-reinforced composite plate in a thermal environment by considering the inherent material damping property of the composite material.
Related Papers (5)
Sound transmission loss of foam-filled honeycomb sandwich panels using statistical energy analysis and theoretical and measured dynamic properties
Ran Zhou,Malcolm J. Crocker +1 more