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首页> 外文期刊>Journal of Sound and Vibration >Vibration control simulation of laminated composite plates with integrated piezoelectrics
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Vibration control simulation of laminated composite plates with integrated piezoelectrics

机译:集成压电材料的层压复合板的振动控制仿真

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摘要

A finite element formulation is presented to model the dynamic as well as static response of laminated composite plates containing integrated piezoelectric sensors and actuators subjected to both mechanical and electrical loadings. The formulation is based on the classical laminated plate theory and Hamilton's principle. In this formulation, the mass and stiffness of the piezo-layers have been taken into account. A four-node non-conforming rectangular plate bending element is implemented for the analysis. 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 model is validated by comparison with existing results documented in the literature. Several numerical examples are presented. The influence of stacking sequence and position of sensors/actuators on the response of the plate is evaluated.
机译:提出了一个有限元公式来模拟包含有集成压电传感器和执行器的层压复合板的动态和静态响应,该压电传感器和执行器同时受到机械和电气负荷。该公式基于经典的层压板理论和汉密尔顿原理。在这种配方中,已经考虑了压电层的质量和刚度。分析时采用了四节点不合格矩形板弯曲元件。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力响应。通过与文献中记录的现有结果进行比较来验证该模型。给出了几个数值示例。评估堆叠顺序和传感器/执行器位置对板响应的影响。

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