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A comparative study of dragonfly inspired flapping wings actuated by single crystal piezoceramic

机译:单晶压电陶瓷驱动蜻蜓拍打翅膀的比较研究

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摘要

A dragonfly inspired flapping wing is investigated in this paper. The flapping wing is actuated from the root by a PZT-5H and PZN-7%PT single crystal unimorph in the piezofan configuration. The nonlinear governing equations of motion of the smart flapping wing are obtained using the Hamilton's principle. These equations are then discretized using the Galerkin method and solved using the method of multiple scales. Dynamic characteristics of smart flapping wings having the same size as the actual wings of three different dragonfly species Aeshna Multicolor, Anax Parthenope Julius and Sympetrum Frequens are analyzed using numerical simulations. An unsteady aerodynamic model is used to obtain the aerodynamic forces. Finally, a comparative study of performances of three piezoelectrically actuated flapping wings is performed. The numerical results in this paper show that use of PZN-7%PT single crystal piezoceramic can lead to considerable amount of wing weight reduction and increase of lift and thrust force compared to PZT-5H material. It is also shown that dragonfly inspired smart flapping wings actuated by single crystal piezoceramic are a viable contender for insect scale flapping wing micro air vehicles.
机译:本文研究了蜻蜓启发的扑翼。拍翼由压电风扇配置的PZT-5H和PZN-7%PT单晶单晶从根部驱动。利用汉密尔顿原理获得了智能扑翼的非线性运动控制方程。然后使用Galerkin方法将这些方程离散化,并使用多尺度方法求解。使用数值模拟分析了具有与三种不同蜻蜓物种Aeshna Multicolor,Anax Parthenope Julius和Sympetrum Frequens的实际机翼相同大小的智能扑翼的动态特性。使用非定常空气动力学模型来获得空气动力学力。最后,对三个压电致动襟翼的性能进行了比较研究。本文的数值结果表明,与PZT-5H材料相比,使用PZN-7%PT单晶压电陶瓷可以显着减少机翼重量,并增加升力和推力。还表明,由单晶压电陶瓷驱动的蜻蜓启发的智能拍打机翼是昆虫规模拍打机翼微型飞行器的可行竞争者。

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