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An Insect-Like Flapping-Wing Device Actuated by a Compressed Unimorph Piezoelectric Composite Actuator.

, , , and . Intelligent Unmanned Systems, volume 192 of Studies in Computational Intelligence, Springer, (2009)

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Improvement of stability for vertical take-off of an insect-mimicking flapping-wing system., , , , and . URAI, page 872. IEEE, (2011)Parametric study of the wetting transition of a moving meniscus., , , and . J. Vis., 20 (1): 111-123 (2017)Effect of Nozzle shape on droplet generation stability in EHD Inkjet, , , , and . 63rd Annual Meeting of the APS Division of Fluid Dynamics, 55, (21–23 11 2010)Investigation of ground effect on aerodynamic forces and three-dimensional flow structures for a flapping wing., , , and . URAI, page 738-740. IEEE, (2013)Development of a locust-like jumping mechanism., , and . URAI, page 591-593. IEEE, (2011)An Insect-Like Flapping-Wing Device Actuated by a Compressed Unimorph Piezoelectric Composite Actuator., , , and . Intelligent Unmanned Systems, volume 192 of Studies in Computational Intelligence, Springer, (2009)Cavitation Flow Analysis of Axisymmetric Bodies Moving in the Water., and . ICCSA (5), volume 3984 of Lecture Notes in Computer Science, page 537-545. Springer, (2006)Experimental and numerical investigation of beetle flight., , , , and . ROBIO, page 234-239. IEEE, (2008)Drag Reduction on Micro-Structured Super-hydrophobic Surface., , and . ROBIO, page 818-823. IEEE Computer Society, (2006)Thrust improvement of an fish robot actuated by compressed unimorph piezoelectric composite actuator., , and . ROBIO, page 1603-1608. IEEE, (2009)