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Design and Demonstration of Insect Mimicking Foldable Artificial Wing Using Four-Bar Linkage Systems 被引量:5

Design and Demonstration of Insect Mimicking Foldable Artificial Wing Using Four-Bar Linkage Systems
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摘要 In this work, we develop an artificial foldable wing that mimics the hind wing of a beetle (Allomyrina dichotoma). In real flight, the beetle unfolds forewings and hind wings, and maintains the unfolded configuration unless it is exhausted. The artificial wing has to be able to maintain a fully unfolded configuration while flapping at a desirable flapping frequency. The artificial foldable hind wing developed in this work is based on two four-bar linkages which adapt the behaviors of the beetle's hind wing. The four-bar-linkages are designed to mimic rotational motion of the wing base and the vein folding/unfolding motion of the beetle's hind wing. The behavior of the artificial wings, which are installed in a flapping-wing system, is observed using a high-speed camera. The observation shows that the wing could maintain a fully unfolded configuration during flapping motion. A series of thrust measurements are also conducted to estimate the force generated by the flapping-wing system with foldable artificial wings. Although the artificial foldable wings give added burden to the flapping-wing system because of its weight, the thrust measurement results show that the flapping-wing system could still generate reasonable thrust. In this work, we develop an artificial foldable wing that mimics the hind wing of a beetle (Allomyrina dichotoma). In real flight, the beetle unfolds forewings and hind wings, and maintains the unfolded configuration unless it is exhausted. The artificial wing has to be able to maintain a fully unfolded configuration while flapping at a desirable flapping frequency. The artificial foldable hind wing developed in this work is based on two four-bar linkages which adapt the behaviors of the beetle's hind wing. The four-bar-linkages are designed to mimic rotational motion of the wing base and the vein folding/unfolding motion of the beetle's hind wing. The behavior of the artificial wings, which are installed in a flapping-wing system, is observed using a high-speed camera. The observation shows that the wing could maintain a fully unfolded configuration during flapping motion. A series of thrust measurements are also conducted to estimate the force generated by the flapping-wing system with foldable artificial wings. Although the artificial foldable wings give added burden to the flapping-wing system because of its weight, the thrust measurement results show that the flapping-wing system could still generate reasonable thrust.
出处 《Journal of Bionic Engineering》 SCIE EI CSCD 2014年第3期449-458,共10页 仿生工程学报(英文版)
关键词 beetle's hind wing folding/unfolding motion flapping-wing system foldable wing four-bar linkage configuration thrust measurement beetle's hind wing, folding/unfolding motion, flapping-wing system, foldable wing, four-bar linkage configuration, thrust measurement
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  • 1Tailie Jin,Nam Seo Goo,Sung-Choong Woo,Hoon Cheol Park.Use of a Digital Image Correlation Technique for Measuring the Material Properties of Beetle Wing[J].Journal of Bionic Engineering,2009,6(3):224-231. 被引量:4
  • 2杨志贤,王卫英,虞庆庆,戴振东.四种甲虫鞘翅的力学参数测定及微结构观测[J].复合材料学报,2007,24(2):92-98. 被引量:19
  • 3Reichman A M.Development of Nano-Characterization System for Polymer Film Measurement and Single BGA Solder Joint Forming Experiment. . 2007
  • 4Schmidt T,Tyson J,Galanulis K,Revilock D,Melis M.Full-field dynamic deformation and strain measurements using high-speed digital cameras. SPIE Proceedings Series . 2005
  • 5Sutton M A,McNeill S R,Helm J D,Schreier H S.Computer vision applied to shape and deformation measurement. Trends in Optical Non-Destructive Testing and Inspection . 2000
  • 6ARAMIS v5. 3. 0 User Manual. . 2004
  • 7Combes S A,Daniel T L.Flexural stiffness in insect wings I.Scaling and the influence of wing venation. Journal of Experiment . 2003
  • 8Vincent J F V.Biomechanics-Materials:A Practical Approach. . 1992
  • 9Haas F,Gorb S,Blickhan R.The function of resilin in beetle wings. Proceedings of the Royal Sociery of London B . 2000
  • 10Combes S A,Daniel T L.Flexural stiffness in insect wings II.Spatial distribution and dynamic wing bending. Journal of Experiment . 2003

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