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Using modified Halpin-Tsai approach for vibrational analysis of thick functionally graded multi-walled carbon nanotube plates

机译:使用改进的Halpin-TSAI方法进行厚功能渐进的多壁碳纳米管板振动分析

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In the most of previous studies, researchers have restricted their own studies to consider the effect of single walled carbon nanotubes as a reinforcement on the vibrational behavior of structures. In the present work, free vibration characteristics of functionally graded annular plates reinforced by multi-walled carbon nanotubes resting on Pasternak foundation are presented. The response of the elastic medium is formulated by the Winkler/Pasternak model. Modified Halpin-Tsai equation was used to evaluate the Young's modulus of the multi-walled carbon nanotube/epoxy composite samples by the incorporation of an orientation as well as an exponential shape factor in the equation. The exponential shape factor modifies the Halpin-Tsai equation from expressing a straight line to a nonlinear one in the multi-walled carbon nanotubes wt% range considered. The 2-D generalized differential quadrature method as an efficient and accurate numerical tool is used to discretize the equations of motion and to implement the various boundary conditions. The effects of two-parameter elastic foundation modulus, geometrical and material parameters together with the boundary conditions on the frequency parameters of the plates are investigated. This study serves as a benchmark for assessing the validity of numerical methods or two-dimensional theories used to analysis of annular plates.
机译:在以前的大多数研究中,研究人员限制了自己的研究,以考虑单壁碳纳米管的效果作为结构的振动行为的增强。在本作的工作中,提出了通过多壁碳纳米管加强的功能渐变环形板的自由振动特性,依赖于Pasternak基础。弹性介质的响应由Winkler / Pasternak模型配制。改进的Halpin-Tsai方程用于评估多壁碳纳米管/环氧树脂复合材料样品的杨氏模量,通过掺入方程中的指数形状因子。指数形状因子将Halpin-Tsai方程改变为在考虑的多壁碳纳米管WT%范围内表达直线到非线性的方程。作为高效和准确的数字工具的2-D通用差分正交方法用于离散运动方程并实现各种边界条件。研究了双参数弹性基模量,几何和材料参数与板频率参数的边界条件的影响。本研究用作评估用于分析环形板的数值方法或二维理论的有效性的基准。

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