Design of a Single-Acting Constant-Force Actuator Based on Dielectric Elastomers

Author:

Berselli Giovanni1,Vertechy Rocco1,Vassura Gabriele1,Castelli Vincenzo Parenti1

Affiliation:

1. Diem, Department of Mechanical Engineering, University of Bologna, Bologna 40136, Italy

Abstract

The interest in actuators based on dielectric elastomer films as a promising technology in robotic and mechatronic applications is increasing. The overall actuator performances are influenced by the design of both the active film and the film supporting frame. This paper presents a single-acting actuator, which is capable of supplying a constant force over a given range of motion. The actuator is obtained by coupling a rectangular film of silicone dielectric elastomer with a monolithic frame designed to suitably modify the force generated by the dielectric elastomer film. The frame is a fully compliant mechanism whose main structural parameters are calculated using a pseudo-rigid-body model and then verified by finite element analysis. Simulations show promising performance of the proposed actuator.

Publisher

ASME International

Subject

Mechanical Engineering

Reference15 articles.

1. Plante, J. S. , 2006, “Dielectric Elastomer Actuators for Binary Robotics and Mechatronics,” Ph.D. thesis, Massachusetts Institute of Technology, Cambridge, MA.

2. Vogan, J. , 2004, “Development of Dielectric Elastomer Actuators for MRI Devices,” MS thesis, Massachusetts Institute of Technology, Cambridge, MA.

3. On the Design of Large Degree-of-Freedom Digital Mechatronic Devices Based on Bistable Dielectric Elastomer Actuators;Wingert;IEEE/ASME Trans. Mechatron.

4. Polymer Based Actuators for Virtual Reality Devices and Rehabilitation Applications;Bolzmacher;Proc. SPIE

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