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Rapid Prototyping Dynamic Robotic Fibers for Tunable Movement

Jay Kolvenbag, Miguel Bruns, Amy Winters

Year
2022
Citations
3

Abstract

Liquid crystal elastomers (LCEs) are promising shape-changing actuators for soft robotics in human–computer interaction (HCI). Current LCE manufacturing processes, such as fiber-drawing, extrusion, and 3D printing, face limitations on form-giving and accessibility. We introduce a novel rapid-prototyping approach for thermo-responsive LCE fiber actuators based on vacuum molding extrusion. Our contributions are threefold, a) a vacuum fiber molding (VFM) machine, b) LCE actuators with customizable fiber shapes c) open-source hackability of the machine. We build and test the VFM machine to generate shape-changing movements from four fiber actuators (pincer, curl, ribbon, and hook), and we look at how these new morphologies bridge towards soft robotic device integration.

Keywords

ActuatorSoft roboticsRapid prototypingComputer scienceRoboticsExtrusionMolding (decorative)Mechanical engineeringCurl (programming language)Robot

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