Home /Research /Fabrication and Characterization of a Dielectric Elastomer Actuator Based Flapping Wing
OTHER

Fabrication and Characterization of a Dielectric Elastomer Actuator Based Flapping Wing

D. Niteesh, Shreya Malkurthi, Chetanya Goyal, Aftab M. Hussain

Year
2023
Citations
2

Abstract

Biomimetic technologies are an important part of the soft robotics research area because of their ability to replicate naturally occurring structures. Researchers have been developing and improving many such technologies ranging from prosthetics to artificial skin. In this work, we present the fabrication and characterization of an artificial muscle flapping wing using dielectric elastomer actuators (DEAs). The actuator was fabricated using a urethane acrylate polymer elastomer with carbon nanotube (CNT) based electrodes. The 40 mm x 20 mm rectangular actuator was powered through two electrodes at the top. It was subjected to different voltages in the range of 500 - 2500 V and the displacement of the bottom edge was observed. We report the actuator edge displacement to be 20 mm, i.e., 0.5 body lengths (BL) at static 2.5 kV. The dynamic behavior of the device was also analyzed by actuating it with a square wave of various frequencies (0 to 10 Hz). We report the resonant frequency of the actuator to be 4 Hz, with a sub-harmonic at 2 Hz.

Keywords

Materials scienceActuatorElastomerFlappingSoft roboticsFabricationArtificial muscleDielectric elastomersDisplacement (psychology)Voltage

Related papers

Browse all OTHER papers