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Printed unmanned aerial vehicles using paper-based electroactive polymer actuators and organic ion gel transistors

机译:使用纸基电活性聚合物致动器和有机离子凝胶晶体管的印刷无人机

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摘要

We combined lightweight and mechanically flexible printed transistors and actuators with a paper unmanned aerial vehicle (UAV) glider prototype to demonstrate electrically controlled glide path modification in a lightweight, disposable UAV system. The integration of lightweight and mechanically flexible electronics that is offered by printed electronics is uniquely attractive in this regard because it enables flight control in an inexpensive, disposable, and easily integrated system. Here, we demonstrate electroactive polymer (EAP) actuators that are directly printed into paper that act as steering elements for low cost, lightweight paper UAVs. We drive these actuators by using ion gel-gated organic thin film transistors (OTFTs) that are ideally suited as drive transistors for these actuators in terms of drive current and frequency requirements. By using a printing-based fabrication process on a paper glider, we are able to deliver an attractive path to the realization of inexpensive UAVs for ubiquitous sensing and monitoring flight applications.
机译:我们将轻型和机械柔性的印刷晶体管和执行器与纸质无人机(UAV)滑翔机原型相结合,以演示在轻巧的一次性UAV系统中电控滑行路径的修改。在这方面,由印刷电子产品提供的轻型和机械柔性电子产品的集成具有独特的吸引力,因为它可以在廉价,一次性且易于集成的系统中进行飞行控制。在这里,我们演示了电活性聚合物(EAP)执行器,该执行器直接打印到纸张中,可作为低成本轻量级纸无人机的操纵元件。我们通过使用离子凝胶门控有机薄膜晶体管(OTFT)来驱动这些执行器,就驱动电流和频率要求而言,它们非常适合作为这些执行器的驱动晶体管。通过在滑翔机上使用基于打印的制造过程,我们能够为实现廉价的无人飞行器提供诱人的途径,以实现无处不在的传感和监视飞行应用。

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