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首页> 外文期刊>PLoS One >A laser-microfabricated electrohydrodynamic thruster for centimeter-scale aerial robots
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A laser-microfabricated electrohydrodynamic thruster for centimeter-scale aerial robots

机译:用于厘米级空中机器人的激光微型电流动力学推进器

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摘要

To date, insect scale robots capable of controlled flight have used flapping-wings for generating lift, but this requires a complex and failure-prone mechanism. A simpler alternative is electrohydrodynamic (EHD) thrust, which requires no moving mechanical parts. In EHD, corona discharge generates a flow of ions in an electric field between two electrodes; the high-velocity ions transfer their kinetic energy to neutral air molecules through collisions, accelerating the gas and creating thrust. We introduce a fabrication process for EHD thruster based on 355 nm laser micromachining, which potentially allows for greater materials selection, such as fiber-based composites, than is possible with semiconductor-based lithographic processing. Our four-thruster device measures 1.8 × 2.5 cm and is composed of steel emitters and a lightweight carbon fiber mesh. We measured the electrical current and thrust of each thruster of our four-thruster design, showing agreement with the Townsend relation. The peak thrust of our device, at 5.2 kV, was measured to be 3.03 times its 37 mg (363.0 μN) mass using a precision balance. In free flight, we demonstrated liftoff at 4.6 kV.
机译:迄今为止,能够受控飞行的昆虫规模机器人使用拍打翅膀来产生升力,但这需要一种复杂和失败的机制。更简单的替代方案是电液动力学(EHD)推力,其不需要移动的机械部件。在EHD中,电晕放电在两个电极之间的电场中产生离子流动;高速离子通过碰撞将其动能转移到中性空气分子,加速气体并产生推力。我们引入了基于355nm激光微机械的EHD推进器的制造过程,其可能允许更大的材料选择,例如基于纤维基复合材料,而不是基于半导体的光刻处理。我们的四推推装置测量1.8×2.5厘米,由钢发射器和轻质碳纤维网组成。我们测量了我们四次推进器设计的每种推进器的电流和推力,与Townsend关系达成协议。我们的装置的峰值推力在5.2 kV下测量使用精度平衡为37mg(363.0μN)质量的3.03倍。在免费航班中,我们在4.6 kV展示了升降机。

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