首页> 外文会议>ASME Conference on Smart Materials, Adaptive Structures and Intelligent Systems >COUPLING OF TWO RESONANT MODES FOR INSECT WING MIMICKING IN A FLEXIBLE-WING NAV AND GENERATE LIFT
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COUPLING OF TWO RESONANT MODES FOR INSECT WING MIMICKING IN A FLEXIBLE-WING NAV AND GENERATE LIFT

机译:蜗轮翼展模拟柔性翼导航中的两种共振模式的耦合,产生升力

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This work is based on the original concept of coupling two resonant vibration modes to reproduce insect wing kinematics and generate lift. The key issue is designing the geometry and the elastic properties of the artificial wings to achieve quadrature coupling of the bending and twisting motions using only one actuator. Qualitatively, this implies bringing the frequency of the two resonant modes closer. In the light of this challenge, an optimal wing configuration was determined for a micromachined polymer prototype three centimeters wide and validated through experimental modal analyses to illustrate the proximity of the frequencies of the bending and twisting modes. Then, a dedicated lift force measurement bench was developed and used to demonstrate a lift force equivalent to 110% of the prototype weight. For the first time, high-speed camera measurements of the wing motion confirmed that maximum lift was obtained as expected for bending and twisting motions in phase quadrature with a fully resonant motion of the wings using a single actuator.
机译:这项工作基于耦合两个共振振动模式的原始概念,以再现昆虫翼运动学和产生升力。关键问题在于设计人造翼的几何形状和弹性特性,以实现仅使用一个致动器的弯曲和扭转运动的正交耦合。定性地,这意味着使两个谐振模式更近的频率。鉴于这种挑战,确定用于微加基聚合物原型三厘米宽并通过实验模态分析验证的最佳翼配置,以说明弯曲和扭转模式的频率的接近。然后,开发了专用提升力测量工作台并用于证明相当于原型重量的110%的提升力。首次,机翼运动的高速摄像机测量确认,在相位正交中弯曲和扭曲运动的预期获得了最大升力,使用单个致动器具有翼的完全共振运动。

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