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Linear and nonlinear free and forced vibrations of graphene reinforced piezoelectric composite plate under external voltage excitation

机译:外部电压激励下石墨烯增强压电复合板的线性和非线性自由振动和强迫振动

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摘要

Graphene reinforcements can obviously enhance the piezoelectric properties as well as the mechanical properties of the polyvinylidene fluoride (PVDF). This paper investigates the linear and nonlinear vibration behaviors of the smart piezoelectric composite plate reinforced by uniformly and non-uniformly dispersing graphene platelets (GPLs). The effective Young's modulus is predicted by the Halpin Tsai's parallel model while the effective mass density, Possion's ratio and piezoelectric properties are calculated by the rule of the mixture. Based on the first-order shear deformation plate theory, von Karman nonlinear geometric relationship and Hamilton's principle, the governing equations of motion under different boundary conditions are derived for the smart piezoelectric composite plate. The governing equations of motion are solved to obtain the nonlinear eigenvalue equations by the differential quadrature (DQ) method. The analysis is validated by comparing with the current results of the smart piezoelectric composite plate. The effects of the GPL distribution pattern, stratification number, concentration and geometry of GPLs, plate geometry, external voltage and piezoelectric properties of GPLs as well as boundary conditions on the linear and nonlinear vibration behaviors are discussed in detail. The numerical results clearly illustrate that there exists the great potential for using GPLs in achieving smart structures with significantly improved structural stiffness.
机译:石墨烯增强剂可以明显增强聚偏二氟乙烯(PVDF)的压电性能以及机械性能。本文研究了均匀分散和非均匀分散的石墨烯薄片(GPL)增强的智能压电复合板的线性和非线性振动行为。有效杨氏模量由Halpin Tsai的平行模型预测,而有效质量密度,位置比和压电性能则由混合物的规则计算。基于一阶剪切变形板理论,von Karman非线性几何关系和汉密尔顿原理,推导了智能压电复合板在不同边界条件下的运动控制方程。通过微分求积分法(DQ)求解运动的控制方程,以获得非线性特征值方程。通过与智能压电复合板的当前结果进行比较来验证分析。详细讨论了GPL分布模式,分层数,GPL的浓度和几何形状,板几何形状,GPL的外部电压和压电性能以及边界条件对线性和非线性振动行为的影响。数值结果清楚地表明,使用GPL来实现具有显着改善的结构刚度的智能结构具有很大的潜力。

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