Span-Morphing Wing Using Multistable Honeycomb Metamaterial Structures. [PDF]
Wang R, Niu B.
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Energy-based Aeroelastic Analysis and Optimisation of Morphing Wings
Morphing aircraft can change their shape radically when confronted with a variety of conflicting flight conditions throughout their mission. For instance the F-14 Tomcat fighter aircraft, known from the movie Top Gun, was able to sweep its wings from a ...
De Breuker, R. (author), De Breuker, R.
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A System-Level Review of Bio-Inspired Technologies for Next-Generation UAVs: From Aerodynamics to Energy Systems. [PDF]
Sim G, Jin H, Woo S, Bae WG.
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Mechanical intelligence for artificial wings: A philosophy for multifold high-degree morphing with its mechanisms analogous to biology. [PDF]
Luo B, Wei Li.
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A squirrel-inspired drone with enhanced stability, agility and maneuverability via whole-body morphing. [PDF]
Zheng L, van Zuijlen A, Hamaza S.
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Bridging Biology and Engineering: Unsteady Aerodynamics and Biomimetic Design of Micro Air Vehicles. [PDF]
Prisăcariu EG, Dumitrescu O.
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Musculoskeletal actuators with programmable morphology and tunable dynamics. [PDF]
Xu S +13 more
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Digintel metasurface of extensive reprogrammable morphing. [PDF]
Lin W +6 more
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Research on aerodynamic characteristics prediction of folding-wing aircraft based on improved PointNet+. [PDF]
Chen Z +5 more
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Electrostatic adhesion mitigates aerodynamic losses from gap formations in feathered wings. [PDF]
Haughn KPT +3 more
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