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http://dx.doi.org/10.12989/scs.2020.35.6.765

Nonlinear forced vibrations of multi-scale epoxy/CNT/fiberglass truncated conical shells and annular plates via 3D Mori-Tanaka scheme  

Mirjavadi, Seyed Sajad (Department of Mechanical and Industrial Engineering, Qatar University)
Forsat, Masoud (Department of Civil and Architectural Engineering, Qatar University)
Barati, Mohammad Reza (Fidar project Qaem Company)
Hamouda, AMS (Department of Mechanical and Industrial Engineering, Qatar University)
Publication Information
Steel and Composite Structures / v.35, no.6, 2020 , pp. 765-777 More about this Journal
Abstract
In the context of classic conical shell formulation, nonlinear forced vibration analysis of truncated conical shells and annular plates made of multi-scale epoxy/CNT/fiberglass composites has been presented. The composite material is reinforced by carbon nanotube (CNT) and also fiberglass for which the material properties are defined according to a 3D Mori-Tanaka micromechanical scheme. By utilizing the Jacobi elliptic functions, the frequency-deflection curves of truncated conical shells and annular plates related to their forced vibrations have been derived. The main focus is to study the influences of CNT amount, fiberglass volume, open angle, fiber angle, truncated distance and force magnitude on forced vibrational behaviors of multi-scale truncated conical shells and annular plates.
Keywords
forced vibration; annular plate; conical shell; multi-scale composite; carbon nanotube; annular sector;
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Times Cited By KSCI : 52  (Citation Analysis)
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