ASME 2011 Conference on Smart Materials, Adaptive Structures and Intelligent Systems, Volume 1 2011
DOI: 10.1115/smasis2011-5076
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Aerodynamic Control of Micro Air Vehicle Wings Using Electroactive Membranes

Abstract: Electrically controlled adaptive materials are ideal candidates for developing high agility micro-air-vehicles (MAV) due to their intrinsic multi-functionality. The dielectric elastomer VHB 4910 is one such material, where deformation occurs with an applied electric field. Here, we study the aerostructural response and control authority of a VHB 4910 membrane wing. An experimental membrane-wing platform was constructed by stretching VHB 4910 over a rigid elliptical wing-frame. The low Reynolds number (chord Re… Show more

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Cited by 6 publications
(16 citation statements)
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“…Previous work has demonstrated time-averaged aerodynamic effects of an electric field tunable membrane wing (Hays et al, 2013). Increases in lift on the order of ;20 % were achieved and a delay of stall of ;5°was observed.…”
Section: Introductionmentioning
confidence: 88%
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“…Previous work has demonstrated time-averaged aerodynamic effects of an electric field tunable membrane wing (Hays et al, 2013). Increases in lift on the order of ;20 % were achieved and a delay of stall of ;5°was observed.…”
Section: Introductionmentioning
confidence: 88%
“…This wing shape and geometry was chosen for comparisons with prior research on the electrostatic behavior of this type wing as well as studies on the passive behavior of latex membranes and rigid plates having the same elliptical geometry (Albertani and Babcock, 2008;Hays et al, 2013) To ensure reasonable uniformity in the pre-stretch over the area of the ellipse, a square grid with ;10 mm resolution was drawn on the membrane prior to stretching. It was then mounted onto a rectangular wooden frame such that the elliptical frame could be placed on the pre-stretch membrane and adhered over night to minimize delamination during wind tunnel testing.…”
Section: Active Wing Structurementioning
confidence: 99%
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“…To the authors' knowledge only Hays et al (2013) and Curet et al (2014) have to date experimentally tested the use of DEs for integral actuation of membrane wings. From the computational point of view, the only high-fidelity models in the literature for actuated membrane wings consider only two of the three fields involved and the problem (see Fig.…”
Section: Introductionmentioning
confidence: 99%