4.6 Article

3D Zero Poisson's Ratio Honeycomb Structure for Morphing Wing Applications

期刊

BIOMIMETICS
卷 7, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/biomimetics7040198

关键词

zero Poisson's ratio; ZPR; morphing structure; 3D ZPR; adaptive morphing structure

资金

  1. National Natural Science Foundation of China
  2. Shandong Provincial Key Research and Development Plan
  3. scientific foundation of national key laboratory of science and technology on advanced composites in special environments
  4. [11902100]
  5. [11902099]
  6. [2019GHZ011]
  7. [2021CXGC010702]
  8. [JCKYS2022603C018]
  9. [JCKYS2022603C019]

向作者/读者索取更多资源

A novel 3D Zero Poisson's Ratio (ZPR) honeycomb structure is designed to meet the flexible deformation requirements of morphing aircraft. Pneumatic muscle fibers are introduced as flexible actuators to drive the active deformation of the 3D ZPR honeycomb. The experimental results show the potential of this 3D ZPR structure for morphing wing applications.
Such as flying creatures, morphing aircraft can expand their aerodynamic flight envelopes by changing aerodynamic shapes, significantly improving the scope of application and flight efficiency. A novel 3D Zero Poisson's Ratio (ZPR) honeycomb structure is designed to meet the flexible deformation requirements of morphing aircraft. The 3D ZPR honeycomb can deform in the three principal directions with smooth borders and isotropic. Analytical models related to the uniaxial and shear stiffnesses are derived using the Timoshenko beam model and validated using the quasi-static compression test. The Poisson's ratio of the 3D ZPR honeycomb structure has an average value of 0.0038, proving the feasibility of the 3D ZPR concept. Some pneumatic muscle fibers are introduced into the system as flexible actuators to drive the active deformation of the 3D ZPR honeycomb. The active 3D ZPR honeycomb can contract by 14.4%, unidirectionally bend by 7.8 degrees, and multi-directions bend under 0.4 Mpa pressure. Both ZPR properties and flexible morphing capabilities show the potential of this novel 3D ZPR configuration for morphing wings.

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