Nonlinear dynamic response of nanotube-reinforced composite plates resting on elastic foundations in thermal environments

被引:0
作者
Zhen-Xin Wang
Hui-Shen Shen
机构
[1] Shanghai Jiao Tong University,School of Ocean and Civil Engineering
[2] Shanghai Jiao Tong University,State Key Laboratory of Ocean Engineering
来源
Nonlinear Dynamics | 2012年 / 70卷
关键词
Nanocomposites; Functionally graded materials; Temperature-dependent properties; Dynamic response; Elastic foundation;
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学科分类号
摘要
This paper presents an investigation on the nonlinear dynamic response of carbon nanotube-reinforced composite (CNTRC) plates resting on elastic foundations in thermal environments. Two configurations, i.e., single-layer CNTRC plate and three-layer plate that is composed of a homogeneous core layer and two CNTRC surface sheets, are considered. The single-walled carbon nanotube (SWCNT) reinforcement is either uniformly distributed (UD) or functionally graded (FG) in the thickness direction. The material properties of FG-CNTRC plates are assumed to be graded in the thickness direction, and are estimated through a micromechanical model. The motion equations are based on a higher-order shear deformation theory with a von Kármán-type of kinematic nonlinearity. The thermal effects are also included and the material properties of CNTRCs are assumed to be temperature-dependent. The equations of motion that includes plate-foundation interaction are solved by a two-step perturbation technique. Two cases of the in-plane boundary conditions are considered. Initial stresses caused by thermal loads or in-plane edge loads are introduced. The effects of material property gradient, the volume fraction distribution, the foundation stiffness, the temperature change, the initial stress, and the core-to-face sheet thickness ratio on the dynamic response of CNTRC plates are discussed in detail through a parametric study.
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页码:735 / 754
页数:19
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  • [1] Ajayan P.M.(1994)Aligned carbon nanotube arrays formed by cutting a polymer resin—nanotube composite Science 265 1212-1214
  • [2] Stephan O.(2002)Aligned multi-walled carbon nanotube-reinforced composites: processing and mechanical characterization J. Phys. D, Appl. Phys. 35 1773-1788
  • [3] Colliex C.(2005)Axial Young’s modulus prediction of single-walled carbon nanotube arrays with diameters from nanometer to meter scales Appl. Phys. Lett. 87 1741-1748
  • [4] Trauth D.(2004)Molecular dynamics simulations of the elastic moduli of polymer–carbon nanotube composites Comput. Methods Appl. Mech. Eng. 193 315-323
  • [5] Thostenson E.T.(2006)Modeling of effective elastic properties for polymer based carbon nanotube composites Polymer 47 289-296
  • [6] Chou T.W.(2007)Molecular dynamics simulations of the elastic properties of polymer/carbon nanotube composites Comput. Mater. Sci. 39 9-19
  • [7] Sun C.H.(2007)Thermal properties and percolation in carbon nanotube–polymer composites J. Appl. Phys. 91 3403-3411
  • [8] Li F.(2004)On the tensile and shear strength of nano-reinforced composite interfaces Mater. Des. 25 155-182
  • [9] Cheng H.M.(2009)Nonlinear bending of functionally graded carbon nanotube-reinforced composite plates in thermal environments Compos. Struct. 91 2319-2330
  • [10] Lu G.Q.(2010)Thermal buckling and postbuckling behavior of functionally graded carbon nanotube-reinforced composite plates Mater. Des. 31 2096-2108