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AuthorEyvazian, Arameh
AuthorMusharavati, Farayi
AuthorTarlochan, Faris
AuthorPasharavesh, Abdolreza
AuthorRajak, Dipen Kumar
AuthorHusain, Mohammed Bakr
AuthorTran, Tron Nhan
Available date2023-01-26T07:03:29Z
Publication Date2020
Publication NameStructural Engineering and Mechanics
ResourceScopus
URIhttp://dx.doi.org/10.12989/sem.2020.75.1.001
URIhttp://hdl.handle.net/10576/38900
AbstractPresent research is aimed to investigate the free vibration behavior of functionally graded (FG) nanocomposite conical panel reinforced by graphene platelets (GPLs) on the elastic foundation. Winkler-Pasternak elastic foundation surrounds the mentioned shell. For each ply, graphaene platelets are randomly oriented and uniformly dispersed in an isotropic matrix. It is assumed that the Volume fraction of GPLs reainforcement could be different from layer to layer according to a functionally graded pattern. The effective elastic modulus of the conical panel is estimated according to the modified Halpin-Tsai rule in this manuscript. Cone is modeled based on the first order shear deformation theory (FSDT). Hamilton's principle and generalized differential quadrature (GDQ) approach are also used to derive and discrete the equations of motion. Some evaluations are provided to compare the natural frequencies between current study and some experimental and theoretical investigations. After validation of the accuracy of the present formulation and method, natural frequencies and the corresponding mode shapes of FG-GPLRC conical panel are developed for different parameters such as boundary conditions, GPLs volume fraction, types of functionally graded and elastic foundation coefficients. Copyright 2020 Techno-Press, Ltd.
SponsorThis research is founded by the Vietnam National Foundation for Science and Technology Development (NAFOSTED) under grant number 107.99-2019.02.
Languageen
PublisherTechno-Press
SubjectConical panel
Elastic foundation
GDQM
Graphene platelets
Nanocomposite
TitleFree vibration of FG-GPLRC conical panel on elastic foundation
TypeArticle
Pagination18-Jan
Issue Number1
Volume Number75
dc.accessType Abstract Only


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