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Design and performance of an insect-inspired nano air vehicle

机译:昆虫启发式纳米飞行器的设计与性能

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This work reports the structural design, actuation and performance of an insect-inspired nano air vehicle. For this purpose, an original design concept of resonant wings using indirect actuation and concise transmission to allow large and symmetrical bending angles, passive wing torsion and to minimize energy expenditure is presented. A simplified analytical model and a numerical approach for the transmission between the actuator and the wings are then proposed to validate the design. The all-polymer prototypes were obtained using micromachining SU-8 photoresist technology. An electromagnetic actuator was added to control the vibrating amplitudes and create passive wing torsion. The actuator was optimized to make it more effective whilst at the same time minimizing its mass. Prototypes with a global wingspan of 3.5 cm and a mass of 22 mg due to the structure and actuator are presented. Bending amplitudes of the wings up to 60 degrees were measured with these prototypes. The resonant frequency of the wings varied according to the design and mass. It was demonstrated that it is possible to obtain, without an important driving mechanism a very promising kinematics.
机译:这项工作报告了昆虫启发的纳米航空器的结构设计,致动和性能。为此,提出了使用间接驱动和简洁传动的共振机翼的原始设计概念,以允许大而对称的弯曲角度,被动机翼扭转并最小化能量消耗。然后提出了一种简化的分析模型和一种用于致动器和机翼之间的传动的数值方法来验证设计。使用微加工SU-8光刻胶技术获得了所有聚合物的原型。添加了电磁执行器来控制振动幅度并产生被动机翼扭转。对执行器进行了优化,使其更有效,同时又使其质量最小。由于结构和致动器的缘故,提出了翼展为3.5厘米,质量为22毫克的原型。用这些原型测量机翼的弯曲幅度高达60度。机翼的共振频率根据设计和质量而变化。事实证明,没有重要的驱动机制,就有可能获得非常有前途的运动学。

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