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Biomimetic Beetle-Inspired Flapping Air Vehicle Actuated by Ionic Polymer-Metal Composite Actuator

机译:离子聚合物-金属复合驱动器驱动仿生甲壳虫拍打飞行器

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During the last decades, the ionic polymer-metal composite (IPMC) received much attention because of its potential capabilities, such as large displacement and flexible bending actuation. In this paper, a biomimetic flapping air vehicle was proposed by combining the superiority of ionic polymer metal composite with the bionic beetle flapping principle. The blocking force was compared between casted IPMC and IPMC. The flapping state of the wing was investigated and the maximum displacement and flapping angle were measured. The flapping displacement under different voltage and frequency was tested. The flapping displacement of the wing and the support reaction force were measured under different frequency by experiments. The experimental results indicate that the high voltage and low frequency would get large flapping displacement.
机译:在过去的几十年中,离子聚合物-金属复合材料(IPMC)由于其潜在的功能(例如大位移和灵活的弯曲驱动)而备受关注。通过结合离子聚合物金属复合材料的优越性和仿生甲虫扑动原理,提出了仿生扑翼飞行器。在浇铸的IPMC和IPMC之间比较了阻挡力。研究了机翼的拍打状态,并测量了最大位移和拍打角度。测试了不同电压和频率下的拍打位移。通过实验测量了机翼在不同频率下的拍打位移和支撑反作用力。实验结果表明,高电压和低频会产生较大的振摆位移。

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