Biaxial Buckling and Bending of Smart Nanocomposite Plate Reinforced by CNTs using Extended Mixture Rule Approach

In this research, the buckling and bending behaviour of smart nanocomposite plate reinforced by single- walled carbon nanotubes (SWCNTs) under electro-magneto-mechanical loadings is studied. The extended mixture rule approach is used to determine the elastic properties of nanocomposite plate. Equili...

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Main Authors: Mehdi Mohammadimehr, Borhan Rousta-Navi, Ali Ghorbanpour-Arani
Format: Article
Language:English
Published: Semnan University 2014-04-01
Series:Mechanics of Advanced Composite Structures
Subjects:
Online Access:https://macs.semnan.ac.ir/article_276_b5abae97c9bf4162d5a91192e6d55682.pdf
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author Mehdi Mohammadimehr
Borhan Rousta-Navi
Ali Ghorbanpour-Arani
author_facet Mehdi Mohammadimehr
Borhan Rousta-Navi
Ali Ghorbanpour-Arani
author_sort Mehdi Mohammadimehr
collection DOAJ
description In this research, the buckling and bending behaviour of smart nanocomposite plate reinforced by single- walled carbon nanotubes (SWCNTs) under electro-magneto-mechanical loadings is studied. The extended mixture rule approach is used to determine the elastic properties of nanocomposite plate. Equilibrium equations of smart nanocomposite plate are derived using the Hamilton’s principle based on the classical plate theory (CPT). The nonlocal critical biaxial buckling load and the nonlocal deflection of smart nanocomposite plate are obtained by applying the Eringen’s theory and Navier’s method. In this article, the influences of applied voltage, magnetic field, aspect ratios, nonlocal parameter, and elastic foundation coefficients on the critical buckling load and deflection of smart nanocomposite plate are investigated. The nonlocal critical biaxial buckling load of smart nanocomposite plate increases with the increase in applied voltage and magnetic field intensity. The nonlocal deflection of smart nanocomposite plate decreases with an increase in the magnetic field intensity. Also, the stability of smart nanocomposite plate increases in the presence of elastic foundation.
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issn 2423-4826
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publisher Semnan University
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series Mechanics of Advanced Composite Structures
spelling doaj-art-ea3fb89eba294e4283fa505c309dd03e2025-08-20T02:36:31ZengSemnan UniversityMechanics of Advanced Composite Structures2423-48262423-70432014-04-0111172610.22075/macs.2014.276276Biaxial Buckling and Bending of Smart Nanocomposite Plate Reinforced by CNTs using Extended Mixture Rule ApproachMehdi Mohammadimehr0Borhan Rousta-Navi1Ali Ghorbanpour-Arani2Department of Solid Mechanics, Faculty of Mechanical Engineering, University of Kashan, Kashan, IranDepartment of Solid Mechanics, Faculty of Mechanical Engineering, University of Kashan, Kashan, IranInstitute of Nanoscience & Nanotechnology, University of Kashan, Kashan,IranIn this research, the buckling and bending behaviour of smart nanocomposite plate reinforced by single- walled carbon nanotubes (SWCNTs) under electro-magneto-mechanical loadings is studied. The extended mixture rule approach is used to determine the elastic properties of nanocomposite plate. Equilibrium equations of smart nanocomposite plate are derived using the Hamilton’s principle based on the classical plate theory (CPT). The nonlocal critical biaxial buckling load and the nonlocal deflection of smart nanocomposite plate are obtained by applying the Eringen’s theory and Navier’s method. In this article, the influences of applied voltage, magnetic field, aspect ratios, nonlocal parameter, and elastic foundation coefficients on the critical buckling load and deflection of smart nanocomposite plate are investigated. The nonlocal critical biaxial buckling load of smart nanocomposite plate increases with the increase in applied voltage and magnetic field intensity. The nonlocal deflection of smart nanocomposite plate decreases with an increase in the magnetic field intensity. Also, the stability of smart nanocomposite plate increases in the presence of elastic foundation.https://macs.semnan.ac.ir/article_276_b5abae97c9bf4162d5a91192e6d55682.pdfbiaxial buckling and bendingsmart nanocomposite plateelectro-magneto-mechanical loadingsthe extended mixture rule approachclassical plate theory
spellingShingle Mehdi Mohammadimehr
Borhan Rousta-Navi
Ali Ghorbanpour-Arani
Biaxial Buckling and Bending of Smart Nanocomposite Plate Reinforced by CNTs using Extended Mixture Rule Approach
Mechanics of Advanced Composite Structures
biaxial buckling and bending
smart nanocomposite plate
electro-magneto-mechanical loadings
the extended mixture rule approach
classical plate theory
title Biaxial Buckling and Bending of Smart Nanocomposite Plate Reinforced by CNTs using Extended Mixture Rule Approach
title_full Biaxial Buckling and Bending of Smart Nanocomposite Plate Reinforced by CNTs using Extended Mixture Rule Approach
title_fullStr Biaxial Buckling and Bending of Smart Nanocomposite Plate Reinforced by CNTs using Extended Mixture Rule Approach
title_full_unstemmed Biaxial Buckling and Bending of Smart Nanocomposite Plate Reinforced by CNTs using Extended Mixture Rule Approach
title_short Biaxial Buckling and Bending of Smart Nanocomposite Plate Reinforced by CNTs using Extended Mixture Rule Approach
title_sort biaxial buckling and bending of smart nanocomposite plate reinforced by cnts using extended mixture rule approach
topic biaxial buckling and bending
smart nanocomposite plate
electro-magneto-mechanical loadings
the extended mixture rule approach
classical plate theory
url https://macs.semnan.ac.ir/article_276_b5abae97c9bf4162d5a91192e6d55682.pdf
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AT borhanroustanavi biaxialbucklingandbendingofsmartnanocompositeplatereinforcedbycntsusingextendedmixtureruleapproach
AT alighorbanpourarani biaxialbucklingandbendingofsmartnanocompositeplatereinforcedbycntsusingextendedmixtureruleapproach