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Morphing Aircraft using Fluidic Artificial Muscles

机译:使用流体人工肌肉变形飞机

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摘要

Morphing aircraft are vehicles that can reconfigure themselves to optimize their flight performance for various and substantially different mission objectives. Research and simulation studies have shown the wide variety of performance benefits afforded by morphing technologies, but there have historically been barriers preventing the fabrication and testing of such vehicles. One of these barriers is a properly scaled actuation system. This work considers an actuation technology aimed at overcoming many of the limitations experienced with more conventional actuation concepts for the broad-scale dimensional changes of morphing aircraft. In particular, the present design focuses on employing fluidic artificial muscles (FAMs) to drive a substructure mechanism that simulates a large (100%) area change in a morphing skin. Results of the prototype demonstration show that FAMs are capable of generating significant morphing or control authority.
机译:变形飞机是可以重新配置自身以优化其飞行性能的车辆,以实现各种不同的任务目标。研究和仿真研究表明,变形技术可带来各种性能优势,但是历史上一直存在阻碍此类车辆制造和测试的障碍。这些障碍之一是适当缩放的致动系统。这项工作考虑了一种致动技术,旨在克服变形飞机的大规模尺寸变化的更常规致动概念所遇到的许多限制。特别地,本设计集中于采用流体人工肌肉(FAM)来驱动子结构机制,该机制可模拟正在变形的皮肤中较大的区域变化(100%)。原型演示的结果表明,FAM能够生成显着的变形或控制权限。

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