Kinetics of elastic recoil in the wings of the cicada, Dundubia rufivena
Alam, P.; Sayekti, P. R.; Fahrunnida, F.; Robert, C.; Retnoaji, B.; Alam, C. M.
Show abstract
In this paper, we quantitatively characterise the kinetics of elastic recoil in the wings attached to the cicada Dundubia rufivena. We use high speed videography to deduce the velocities of recoil motion in both bending (B) and torsion (T), in downstroke and upstroke modes of flapping. Elastic recoil is faster in downstroke (DS) than it is in upstroke (US), reaching average velocities, [Formula], 244 {degrees}.s-1 in DS-B vs 6434 {degrees}.s-1 in US-B, and 5887 {degrees}.s-1 in DS-T vs 4545 {degrees}.s-1 in US-T. Our results also therefore evidence that bending velocities during elastic recoil, are higher to the velocities in torsion, and conclude that this is a result of the necessary geometrical distances that need to be covered over a stroke. The wings do not act alone as biological springs, but rather, we find that the stiffnesses of the wings (1.7-3.6 GPa) are higher when attached to the cicada body, than they are when detached. This evidences thoracical involvement as part of the biological spring enabling elastic recoil, indicating that elastic recoil of flapping wings should be approached from a systems perspective, rather than solely through a localised understanding of wing mechanics.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Inter-species variation in number of bristles on forewings of tiny insects does not impact clap-and-fling aerodynamics 95%
- Close encounters of three kinds: impacts of leg, wing, and body collisions on flight performance in carpenter bees 94%
- Sexual Dimorphism in Jump Kinematics and Choreography in Peacock Spiders 93%
Similar papers in this journal
Similar papers in this journal
- The flying insect thoracic cuticle is heterogenous in structure and in thickness-dependent modulus gradation 96%
- How a sticky fluid facilitates prey retention in a carnivorous pitcher plant (Nepenthes rafflesiana) 93%
- The ultrastructure of the starfish skeleton is correlated with mechanical stress 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.