Related Experiment Video
Updated: Nov 2, 2025

Building an Enhanced Flight Mill for the Study of Tethered Insect Flight
Published on: March 10, 2021
The damping and structural properties of dragonfly and damselfly wings during dynamic movement
Carina Lietz1, Clemens F Schaber1, Stanislav N Gorb1
1Institute of Zoology, Functional Morphology and Biomechanics, Kiel University, Kiel, Germany.
Abstract:
For flying insects, stability is essential to maintain the orientation and direction of motion in flight. Flight instability is caused by a variety of factors, such as intended abrupt flight manoeuvres and unwanted environmental disturbances. Although wings play a key role in insect flight stability, little is known about their oscillatory behaviour. Here we present the first systematic study of insect wing damping. We show that different wing regions have almost identical damping properties. The mean damping ratio of fresh wings is noticeably higher than that previously thought. Flight muscles and hemolymph have almost no 'direct' influence on the wing damping. In contrast, the involvement of the wing hinge can significantly increase damping. We also show that although desiccation reduces the wing damping ratio, rehydration leads to full recovery of damping properties after desiccation. Hence, we expect hemolymph to influence the wing damping indirectly, by continuously hydrating the wing system.
Related Concept Videos
Types of Damping
Damped Oscillations
Although friction and other non-conservative...
Convergent Evolution
Static and Kinetic Frictional Force
However, if two systems are in contact and are stationary relative to one...
Lift
Magnetic Damping
If, however, the bob is a slotted metal plate, the magnet produces a much smaller effect. When a slotted metal plate enters the field, an emf is induced by the change in flux; however, it is less effective because the slots limit the...

