Size-dependent analysis of FG-CNTRC microplates based on modified strain gradient elasticity theory

被引:70
|
作者
Thai, Chien H. [1 ,2 ]
Ferreira, A. J. M. [3 ]
Rabczuk, T. [4 ]
Nguyen-Xuan, H. [5 ,6 ]
机构
[1] Ton Duc Thang Univ, Div Computat Mech, Ho Chi Minh City, Vietnam
[2] Ton Duc Thang Univ, Fac Civil Engn, Ho Chi Minh City, Vietnam
[3] Univ Porto, Dept Engn Mecan, Fac Engn, Rua Dr Roberto Frias, P-4200465 Porto, Portugal
[4] Bauhaus Univ Weimar, Inst Struct Mech, Marienstr 15, D-99423 Weimar, Germany
[5] Ho Chi Minh City Univ Technol HUTECH, Ctr Interdisciplinary Res Technol, Ho Chi Minh City, Vietnam
[6] Sejong Univ, Dept Architectural Engn, 209 Neungdong Ro, Seoul 05006, South Korea
关键词
Carbon nanotube-reinforced composite materials; Modified strain gradient theory; Size-dependent model; Higher-order shear deformation theory; Isogeometric analysis; SHEAR DEFORMATION-THEORY; FREE-VIBRATION ANALYSIS; REINFORCED COMPOSITE PLATES; REISSNER-MINDLIN PLATES; COUPLE STRESS THEORY; ISOGEOMETRIC ANALYSIS; SANDWICH PLATES; LAMINATED COMPOSITE; BUCKLING ANALYSIS; FINITE-ELEMENT;
D O I
10.1016/j.euromechsol.2018.07.012
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
We present in this study a size-dependent computational approach based on the modified strain gradient theory (MSGT) and higher-order shear deformation theory for static bending and free vibration analyses of functionally graded carbon nanotube-reinforced composite (FG-CNTRC) microplates. Three material length scale parameters (MLSPs) are taken into account in MSGT to capture size effects of microplate behavior. The effective material properties of FG-CNTRC microplates are obtained by an extended rule of mixture. Four types of carbon nanotube distributions, which are either uniform or functionally graded (FG) through the plate thickness, are considered. The governing equations are derived from the principle of virtual work and are then solved by isogeometric analysis (IGA). The IGA is suitable for a numerical implementation of the size-dependent models since it requires higher-order gradients in the weak form. The inclusion of geometrical parameters, boundary conditions, distributed types of carbon nanotube and material length scale parameters are studied to evaluate the displacement and natural frequency of FG-CNTRC microplates. In addition, the present size-dependent model can be retrieved into the modified couple stress model or classical model when a few MLSPs are ignored.
引用
收藏
页码:521 / 538
页数:18
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