Dynamic response of functionally graded graphene nanoplatelet reinforced shells with porosity distributions under transverse dynamic loads
Author | Mirjavadi S.S. |
Author | Forsat M. |
Author | Hamouda A.M.S. |
Author | Barati M.R. |
Available date | 2020-04-09T12:27:27Z |
Publication Date | 2019 |
Publication Name | Materials Research Express |
Resource | Scopus |
ISSN | 20531591 |
Abstract | This article investigates forced vibrational characteristics of a porous nanocomposite shell reinforced by graphene platelets (GPLs) under radial dynamic loads. Material properties of the shell dependents on uniform and non-uniform distributions of GPLs and porosities. Description of the material properties of such nanocomposites accounting for porosity and GPL content is performed via Halpin-Tsai micromechanical rule. The dynamic equations of the nanocomposite shell are based on first order shell theory and a semi-analytical approach is implement to solve these equations and obtain dynamic deflections due to applied load. It is elucidated that GPL and porosity content can significantly affect the dynamic response of a nanocomposite shell. Actually, the resonance frequency of a nanocomposite shell can be increased by increasing the GPL percentage. |
Language | en |
Publisher | Institute of Physics Publishing |
Subject | dynamic load forced vibration graphene platelet nano-composite shells porous shells |
Type | Article |
Issue Number | 7 |
Volume Number | 6 |
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Mechanical & Industrial Engineering [1396 items ]