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Free Vibration Analysis of Smart Laminated Functionally Graded CNT Reinforced Composite Plates via New Four-Variable Refined Plate Theory

机译:通过新的四种改进板理论自由振动分析智能层压功能梯度CNT加固复合板

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摘要

This paper presents a new four-variable refined plate theory for free vibration analysis of laminated piezoelectric functionally graded carbon nanotube-reinforced composite plates (PFG-CNTRC). The present theory includes a parabolic distribution of transverse shear strain through the thickness and satisfies zero traction boundary conditions at both free surfaces of the plates. Thus, no shear correction factor is required. The distribution of carbon nanotubes across the thickness of each FG-CNT layer can be functionally graded or uniformly distributed. Additionally, the electric potential in piezoelectric layers is assumed to be quadratically distributed across the thickness. Equations of motion for PFG-CNTRC rectangular plates are derived using both Maxwell’s equation and Hamilton’s principle. Using the Navier technique, natural frequencies of the simply supported hybrid plate with closed circuit and open circuit of electrical boundary conditions are calculated. New parametric studies regarding the effect of the volume fraction, the CNTs distribution, the number of layers, CNT fiber orientation and thickness of the piezoelectric layer on the free vibration response of hybrid plates are performed.
机译:本文提出了一种新的四可变精制板理论为层叠型压电功能梯度碳纳米管增强复合板(PFG-CNTRC)的自由振动分析。本理论包括穿过厚度横向剪切应变的抛物线分布,且满足零在板的两个自由表面的牵引力的边界条件。因此,需要没有剪切校正因子。碳纳米管的横跨每个FG-CNT层的厚度的分布可被功能梯度或均匀分布。此外,假定在压电体层的电势在整个厚度平方分布。为PFG-CNTRC矩形板的运动方程同时使用麦克斯韦方程和Hamilton原理的。使用纳维技术,具有闭合电路和电边界条件开路简支混合板的固有频率被计算。执行关于体积分数,所述CNT的分布,层的数量,CNT纤维取向和上混合板的自由振动响应中的压电体层的厚度的影响的新的参数研究。

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