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Printing 3D dielectric elastomer actuators for soft robotics

Jonathan Rossiter, Peter Walters, Boyko Stoimenov

Year
2009
Citations
117

Abstract

We present a new approach to the fabrication of soft dielectric elastomer actuators using a 3D printing process. Complete actuators including active membranes and support structures can be 3D printed in one go, resulting in a great improvement in fabrication speed and increases in accuracy and consistency. We describe the fabrication process and present force and displacement results for a double-membrane antagonistic actuator. In this structure controlled prestrain is applied by the simple process of pressing together two printed actuator halves. The development of 3D printable soft actuators will have a large impact on many application areas including engineering, medicine and the emerging field of soft robotics.

Keywords

Soft roboticsActuatorFabricationMaterials scienceElastomer3D printingPressingProcess (computing)Computer sciencePneumatic actuator

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