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Coupled piezoelectric fans with two degree of freedom motion for the application of flapping wing micro aerial vehicles

机译:具有两个自由度运动的耦合压电风扇,用于襟翼微型飞行器的应用

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摘要

Piezoelectric fans consisting of a piezoelectric layer and an elastic metal layer were prepared by epoxy bonding and a coupled flexible wing was formed by a pair of carbon fibre reinforced plastic wing spars and polymer skin attached to two piezoelectric fans. Two sinusoidal voltages with phase differences were then used to drive the coupled piezoelectric fans. High speed digital cameras were used to characterize the two degree of freedom (DOF) motion of the wing and these results were compared to finite element model of the wing and the coupled piezoelectric fans. It has been observed that the phase delay between the driving voltages applied to the coupled piezoelectric fans plays an important role in the control of the flapping and twisting motions of the wing and this set-up has the potential for application to the control of flapping wings for micro aerial vehicles.
机译:通过环氧粘合制备由压电层和弹性金属层组成的压电风扇,并通过一对碳纤维增强塑料翼梁和连接到两个压电风扇的聚合物蒙皮形成耦合的柔性翼。然后使用两个具有相位差的正弦电压来驱动耦合的压电风扇。高速数码相机用于描述机翼的两个自由度(DOF)运动,并将这些结果与机翼和耦合压电风扇的有限元模型进行比较。已经观察到,施加到耦合压电风扇的驱动电压之间的相位延迟在控制机翼的拍打和扭转运动中起着重要作用,并且这种设置有可能应用于控制拍打机翼。用于微型飞行器。

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