Vibration analysis of FG porous rectangular plates reinforced by graphene platelets

被引:34
作者
Zhou, Changlin [1 ]
Zhang, Zhongxian [1 ]
Zhang, Ji [1 ]
Fang, Yuan [2 ]
Tahouneh, Vahid [3 ]
机构
[1] Huazhong Univ Sci & Technol, Sch Civil Engn & Mech, Wuhan 430074, Hubei, Peoples R China
[2] CCTEB Grp Co, Gen Construct Co, Wuhan 430064, Hubei, Peoples R China
[3] Islamic Azad Univ, Islamshahr Branch, Young Researchers & Elite Club, Islamshahr, Iran
基金
中国国家自然科学基金;
关键词
porous nanocomposite plates; generalized differential quadrature method (GDQM); Halpin-Tsai micromechanics model; Vibration analysis; CARBON NANOTUBE; ELASTIC PROPERTIES; POSTBUCKLING BEHAVIOR; BUCKLING ANALYSIS; COMPOSITE PLATES; DYNAMIC-ANALYSIS; SHEAR; STABILITY; STRESS; MATRIX;
D O I
10.12989/scs.2020.34.2.215
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The aim of this study is to investigate free vibration of functionally graded porous nanocomposite rectangular plates where the internal pores and graphene platelets (GPLs) are distributed in the matrix either uniformly or non-uniformly according to three different patterns. The elastic properties of the nanocomposite are obtained by employing Halpin-Tsai micromechanics model. The GPL-reinforced plate is modeled using a semi-analytic approach composed of generalized differential quadrature method (GDQM) and series solution adopted to solve the equations of motion. The proposed rectangular plates have two opposite edges simply supported, while all possible combinations of free, simply supported and clamped boundary conditions are applied to the other two edges. The 2-D differential quadrature method as an efficient and accurate numerical tool is used to discretize the governing equations and to implement the boundary conditions. The convergence of the method is demonstrated and to validate the results, comparisons are made between the present results and those reported by well-known references for special cases treated before, have confirmed accuracy and efficiency of the present approach. New results reveal the importance of porosity coefficient, porosity distribution, graphene platelets (GPLs) distribution, geometrical and boundary conditions on vibration behavior of porous nanocomposite plates. It is observed that the maximum vibration frequency obtained in the case of symmetric porosity and GPL distribution, while the minimum vibration frequency is obtained using uniform porosity distribution.
引用
收藏
页码:215 / 226
页数:12
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