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Frequency characteristics of a GPL-reinforced composite microdisk coupled with a piezoelectric layer

机译:用于压电层的GPL加强复合材料微仪的频率特性

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摘要

This is the first research on the frequency analysis of a graphene nanoplatelet composite (GPLRC) microdisk in the framework of a numerical-based generalized differential quadrature method. The stresses and strains are obtained using the higher-order shear deformable theory. Rule of mixture is employed to obtain varying mass density, thermal expansion, and Poisson's ratio, while module of elasticity is computed by modified Halpin-Tsai model. Governing equations and boundary conditions of the GPLRC microdisk covered with piezoelectric layer are obtained by implementing Hamilton's principle. Regarding perfect bonding between the piezoelectric layer and core, the compatibility conditions are derived. In addition, due to the existence of piezoelectric layer, Maxwell's equation is derived. The results show that outer-to-inner ratio of radius (Ro/Ri), ratios of length scale and nonlocal to thickness (l/h and mu/h), ratio of piezoelectric to core thickness (h(p)/h), applied voltage, and GPL weight fraction (g(GPL)) have significant influence on the frequency characteristics of the GPLRC microdisk. Another important consequence is that in addition to the nonlinear indirect effects of applied voltage on the natural frequency of the GPLRC microdisk covered with piezoelectric for each specific value of Ro/Ri, the impact of the Ro/Ri on the natural frequency is indirect. A useful suggestion of this research is that, for designing the GPLRC circular microplate at the low value of the Ro/Ri should be more attention to the g(GPL) and Ro/Ri, simultaneously.
机译:这是基于数值基的广义差分正交方法的框架中石墨烯纳米薄膜复合物(GPLRC)微仪的频率分析的第一研究。使用高阶剪切可变形理论获得应力和菌株。使用混合物的规则来获得不同的质量密度,热膨胀和泊松比,而弹性模块通过改进的Halpin-Tsai模型计算。通过实施汉密尔顿的原理获得用压电层覆盖的GPLRC微仪的控制方程和边界条件。关于压电层和核心之间的完美粘合,推导了相容性条件。另外,由于压电层的存在,Maxwell的等式衍生。结果表明,半径(RO / RI),长度尺度比和非本体比厚度(L / H和MU / h),压电与芯厚度(H(P)/ h)的比例的外部与内部比,施加电压和GPL重量分数(G(GPL))对GPLRC Microdisk的频率特性产生显着影响。另一个重要的结果是除了施加电压对GPLRC微仪的自然频率的非线性间接效应之外,对于每个特定值的RO / Ri覆盖的GPLRC微仪的自然频率,RO / RI对自然频率的影响是间接的。本研究的一个有用的建议是,为了在RO / RI的低值下设计GPLRC圆形微孔板,应该更加关注G(GPL)和RO / RI。

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