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Nonlinear vibration of temperature-dependent FG-CNTRC laminated plates with negative Poisson's ratio

机译:负泊松比的温度依赖型FG-CNTRC层压板的非线性振动

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摘要

This paper reports a study on the large amplitude nonlinear vibration of carbon nanotube-reinforced composite (CNTRC) laminated plates with negative Poisson's ratios in thermal environments. The constituent materials of CNTRCs are temperature-dependent and the plate is functionally graded (FG) in a piece-wise pattern in the thickness direction of plate. An extended Voigt (rule of mixture) model is adopted to quantify the CNTRC material properties of the laminated plate. The governing motion equations for the large amplitude vibration of FG-CNTRC laminated plates are based on the Reddy's third order shear deformation theory and the von Karman-type kinematic nonlinearity framework, and the thermal effects and the reaction from elastic foundation are taken into account. The nonlinear solution of the motion equation can be obtained by applying a two-step perturbation approach. The effects of material property gradient, the temperature variation, stacking sequence as well as the foundation stiffness on the vibration characteristics of CNTRC laminated plates are examined and discussed in depth through a parametric study. The results show that negative Poisson's ratio has a significant effect on the linear and nonlinear vibration characteristics of CNTRC laminated plates.
机译:本文报道了在热环境下具有负泊松比的碳纳米管增强复合材料(CNTRC)层压板的大振幅非线性振动的研究。 CNTRC的构成材料取决于温度,并且在板的厚度方向上以分段模式对板进行功能分级(FG)。采用扩展的Voigt(混合规则)模型来量化层压板的CNTRC材料性能。 FG-CNTRC叠层板大振幅振动的控制运动方程是基于Reddy的三阶剪切变形理论和von Karman型运动非线性框架,并考虑了热效应和弹性基础的反应。运动方程的非线性解可以通过应用两步扰动方法获得。通过参数研究研究并深入讨论了材料特性梯度,温度变化,堆积顺序以及基础刚度对CNTRC层压板振动特性的影响。结果表明,负泊松比对CNTRC叠层板的线性和非线性振动特性有显着影响。

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