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Deformation of Composite Laminates Induced by Surface Bonded and Embedded Piezoelectric Actuators

机译:表面粘合和嵌入式压电致动器诱导的复合层压板的变形

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摘要

In this work, piezoelectric (PZT) actuators were surface bonded on or embedded in a composite laminate and subjected to an electric voltage across the thickness, resulting in a bending effect on the composite laminate. An analytical expression of the deflection of a simply supported cross-ply composite laminate induced by distributed piezoelectric actuators was derived on the basis of classical plate theory and composite mechanics. The theoretical solution can be used to predict the deformation of the composite laminate. Series of parametric studies were performed to investigate the effects of location, size, and embedded depth of PZT actuators on the composite laminate deformation. The analytical predictions were verified with finite element results. A close agreement was achieved. It demonstrated that the present approach provided a simple solution to predict and control the deformed shape of a composite laminate induced by distributed PZT actuators.
机译:在这项工作中,压电(PZT)致动器在复合层压板上粘合或嵌入复合层压板上并进行厚度的电压,导致对复合层压板的弯曲效果。基于经典板理论和复合力学,得出了由分布式压电致动器引起的简单支持的交叉层复合层压材料的偏转的分析表达。理论溶液可用于预测复合层压板的变形。进行一系列参数研究以研究PZT致动器对复合层压化变形的位置,尺寸和嵌入深度的影响。分析预测以有限元结果验证。达到了密切的协议。它证明本方法提供了一种简单的解决方案来预测和控制由分布的PZT致动器诱导的复合层压材料的变形形状。

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