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Three-dimensional free vibration and bending analyses of functionally graded graphene nanoplatelets-reinforced nanocomposite annular plates

journal contribution
posted on 2024-11-02, 06:36 authored by Dongying Liu, Zhi Li, Sritawat Kitipornchai, Jie YangJie Yang
Based on the three-dimensional theory of elasticity, the free vibration and bending analyses of functionally graded graphene nanoplatelets-reinforced nanocomposite (FG-GPLRC) annular plates are performed in this paper. The state-space based differential quadrature method (SS-DQM) is employed to study the vibration and bending behaviors of multilayer FG-GPLRC annular plates with different boundary conditions. The modified Halpin-Tsai micromechanical model and rule of mixtures are used to evaluate the effective material properties of the graphene-based nanocomposites, and five different types of GPL distribution patterns are discussed. After convergence and validation studies to verify the present analyses, comprehensive parametric investigations are conducted to examine the effects of weight fraction, distribution pattern, and geometric parameters of GPLs on free vibration and bending characteristics of the FG-GPLRC annular plates. Numerical results reveal that pattern GPL-X offers the best reinforcing effect for improved natural frequencies and deformation resistances of the nanocomposite annular plates.

Funding

Thermal Upheaval Buckling of Functionally Graded Pavement Slabs

Australian Research Council

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Buckling of Functionally Graded Multilayer Graphene Nanocomposites

Australian Research Council

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History

Journal

Composite Structures

Volume

229

Number

111453

Start page

1

End page

14

Total pages

14

Publisher

Elsevier

Place published

United Kingdom

Language

English

Copyright

© 2019 Elsevier Ltd. All rights reserved.

Former Identifier

2006094693

Esploro creation date

2020-06-22

Fedora creation date

2019-12-02

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