An efficient computational approach for size-dependent analysis of functionally graded nanoplates

被引:182
|
作者
Ngoc-Tuan Nguyen [1 ,2 ]
Hui, David [3 ]
Lee, Jaehong [2 ]
Nguyen-Xuan, H. [2 ,4 ]
机构
[1] Vietnamese German Univ, Dept Computat Engn, Binh Duong New City, Vietnam
[2] Sejong Univ, Dept Architectural Engn, Seoul 143747, South Korea
[3] Univ New Orleans, Dept Mech Engn, New Orleans, LA 70148 USA
[4] Ho Chi Minh City Univ Technol HUTECH, Ctr Interdisciplinary Res Technol CIRTech, Ho Chi Minh, Vietnam
基金
新加坡国家研究基金会;
关键词
Functionally graded nanoplates; Nonlocal theory; Refined plate theory; Quasi-3D theory; Isogeometric analysis; SHEAR DEFORMATION-THEORY; HIGHER-ORDER SHEAR; FINITE-ELEMENT-ANALYSIS; FREE-VIBRATION ANALYSIS; NONLOCAL PLATE MODEL; STRAIN-GRADIENT PLASTICITY; WALLED CARBON NANOTUBES; NON LOCAL VIBRATION; ISOGEOMETRIC ANALYSIS; GRAPHENE SHEETS;
D O I
10.1016/j.cma.2015.07.021
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this paper, an efficient computational approach based on refined plate theory (RPT) including the thickness stretching effect, namely quasi-3D theory, in conjunction with isogeometric formulation (IGA) is proposed for the size-dependent bending, free vibration and buckling analysis of functionally graded nanoplate structures. The present novel quasi-3D theory not only possesses 4 variables as refined plate theory but also accounts for both shear deformation and stretching effect without any requirement of shear correction factors (SCFs). The size-dependent effect is taken into account by nonlocal elasticity theory. Isogeometric analysis shows a great advantage in dealing with the high continuity and high order derivative requirements of the displacement fields used in quasi-3D and nonlocal theory. The reliability and accuracy of the present method are ascertained by comparing the obtained results with other published ones. Numerical examples are also performed to show the significance of nonlocal effect, material distribution profile, aspect ratios and boundary conditions on the behaviour of FGM nanoplates. (C) 2015 Elsevier B.V. All rights reserved.
引用
收藏
页码:191 / 218
页数:28
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