Toward the design of dynamically similar artificial insect wings
Date
2021-01
Journal Title
Journal ISSN
Volume Title
Publisher
SAGE Publications
Abstract
Flapping wing deformation influences the aerodynamics of insect flight. This deformation is dictated by the dynamical properties of the insect wing, particularly its vibration spectra and mode shapes. However, researchers have not yet developed artificial insect wings with vibration spectra and mode shapes that are identical to their biological counterparts. The goal of the present work is to develop artificial insect wings that are both isospectral and isomodal with respect to real insect wings. To do so, we characterized hawkmoth Manduca sexta wings using experimental modal analyses. From these results, we created artificial wings using additive manufacturing and heat molding. Between artificial and real wings, the first two natural frequencies differ by 7% and 16% respectively, with differences of 16% and 131% in gains evaluated at those natural frequencies. Vibration modes are similar as well. This work provides a foundation for more advanced wing design moving forward.
Description
Keywords
insect flight, flapping wing micro air vehicle, bioinspired design, additive manufacturing, experiemental modal analysis
Citation
Reid, H., Zhou, H., Maxcer, M., Peterson, R. K., Deng, J., & Jankauski, M. (2021). Toward the design of dynamically similar artificial insect wings. International Journal of Micro Air Vehicles, 13, 1756829321992138.
Endorsement
Review
Supplemented By
Referenced By
Creative Commons license
Except where otherwised noted, this item's license is described as cc-by