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Smart flapping wing using Macro-Fiber Composite actuators

机译:使用宏观光纤复合执行器的智能拍翼

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In the present study, we have developed a smart flapping wing with a MFC (macro-fiber composites) actuator. To mimic the flying mechanisms of nature's flyers such as birds or insects, the aerodynamic characteristics related to the birds and ornithopters are investigated. To measure the aerodynamic forces of flapping devices, a test stand consisting of two loadcells is manufactured, and the dynamic tests are performed for an onithopter. The smart flapping wing is designed and manufactured using composite materials and MFC actuators. The camber of the wing can be changed by using the surface actuators to enhance the aerodynamic performance of the wing. Finally, aerodynamic tests are performed in a subsonic wind tunnel to evaluate the dynamic characteristics of the smart flapping wing. Experimental results show that unsteady flow effects are increased with low velocity in high flapping frequency regions, and that the deformation of the wing surface generated by the MFC is enough to control the lift and thrust. The lift generated by the smart flapping wing can be increased by 20% when the MFC is actuated.
机译:在本研究中,我们开发了一种带MFC(宏纤维复合材料)执行器的智能拍打翼。为了模仿自然的传单如鸟类或昆虫等传单的飞行机制,研究了与鸟类和鸟类的空气动力学特征进行了研究。为了测量拍摄装置的空气动力力,制造由两个载荷单元组成的测试支架,并且对ONITHOPTER执行动态测试。使用复合材料和MFC执行器设计和制造智能拍打翼。通过使用表面致动器可以通过使用表面致动器来改变机翼的弯曲,以增强机翼的空气动力学性能。最后,在子旋转隧道中进行空气动力学测试,以评估智能拍打翼的动态特性。实验结果表明,在高拍打频率区域中的低速度增加了不稳定的流动效果,并且MFC产生的机翼表面的变形足以控制升力和推力。当MFC被致动时,智能拍打翼产生的升力可以增加20%。

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