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A finite-element model for piezoelectric composite laminates

机译:压电复合材料层压板的有限元模型

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A finite-element model based on the classical laminated plate theory is developed for the active vibration control of a composite plate containing distributed piezoelectric sensors and actuators. The formulation is derived from the variational principle. The piezoelectrics' mass and stiffness are taken into account in the present model. A simple negative velocity feedback control algorithm coupling the direct and converse piezoelectric effects is used to actively control the dynamic response of an integrated structure through a closed control loop. The static analysis and active vibration suppression of a cantilever composite plate are performed as a numerical example to verify the proposed model. The modal superposition technique and the Newmark-beta method are used in the numerical simulation to calculate the dynamic response of the laminated composite plate.
机译:建立了基于经典层压板理论的有限元模型,用于包含分布式压电传感器和执行器的复合板的主动振动控制。该公式源自变分原理。在本模型中考虑了压电体的质量和刚度。一个简单的负速度反馈控制算法,结合了正压电效应和逆压电效应,可通过闭环控制回路主动控制集成结构的动态响应。通过算例分析了悬臂复合材料板的静力和主动振动,以验证所提出的模型。模态叠加技术和Newmark-beta方法用于数值模拟中,以计算层压复合板的动力响应。

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