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Two modes resonant combined motion for insect wings kinematics reproduction and lift generation

机译:两种模式共振昆虫翅膀运动型运动繁殖和提升生成

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摘要

This paper presents an original concept using a two resonant vibration modes combined motion to reproduce insect wings kinematics and generate lift. The key issue is to design the geometry and the elastic characteristics of artificial wings such that a combination of flapping and twisting motions in a quadrature phase shift could be obtained. This qualitatively implies to bring the frequencies of the two resonant modes closer. For this purpose, a polymeric prototype was micromachined with a wingspan of 3 cm, flexible wings and a single actuator. An optimal wings configuration was determined with a modeling and validated through experimental modal analyses to verify the proximity of the two modes frequencies. A dedicated lift force measurement, bench was developed and used to demonstrate a lift force equivalent to the prototype weight. Finally, at the maximum lift frequency, high-speed camera measurements confirmed a kinematics of the flexible wings with flapping and twisting motions in phase quadrature as expected. Copyright (C) EPLA, 2018
机译:本文呈现了一种原始概念,使用两种共振振动模式组合运动来再现昆虫翅膀运动学并产生升力。关键问题是设计人造翼的几何形状和弹性特性,使得可以获得正交相移中的拍打和扭曲运动的组合。这种定性意味着使两个谐振模式的频率更近。为此目的,聚合物原型用3cm,柔性翼和单个致动器的翅膀微机械。利用建模确定并通过实验模态分析确定最佳翼配置,以验证两个模式频率的接近度。开发了专用提升力测量,替补,并用于展示相当于原型重量的提升力。最后,在最大提升频率下,高速摄像机测量确认了柔性翼的运动学,其相位正交的抖动和扭曲运动如预期。版权所有(c)epla,2018

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  • 来源
    《EPL》 |2018年第6期|共6页
  • 作者单位

    Univ Lille Univ Valenciennes CNRS YNCREA Cent Lille UMR IEMN 8520 DOAE F-59313 Valenciennes France;

    Arts &

    Metiers Paris Tech LSIS UMR 7296 8 Blvd Louis XIV F-59046 Lille France;

    Univ Lille Univ Valenciennes CNRS YNCREA Cent Lille UMR IEMN 8520 DOAE F-59313 Valenciennes France;

    Univ Lille Univ Valenciennes CNRS YNCREA Cent Lille UMR IEMN 8520 DOAE F-59313 Valenciennes France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
  • 关键词

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