A cut-and-fold self-sustained compliant oscillator for autonomous actuation of origami-inspired robots
Wenzhong Yan, Ankur Mehta

TL;DR
This paper introduces a printable, self-sustained compliant oscillator that enables autonomous actuation in origami-inspired robots without electronics, supporting underwater operation, high configurability, and integration into lightweight, low-cost systems.
Contribution
The authors present a novel, printable oscillator that generates periodic actuation solely with constant electrical power, eliminating the need for discrete electronic components.
Findings
Oscillator successfully drives autonomous swimmer at ~1.6 body lengths/min
Configurable period from 3 to 12 seconds
Operates underwater and in high magnetic fields
Abstract
Origami-inspired robots are of particular interest given their potential for rapid and accessible design and fabrication of elegant designs and complex functionalities through cutting and folding of flexible 2D sheets or even strings, i.e.printable manufacturing. Yet, origami robots still require bulky, rigid components or electronics for actuation and control to accomplish tasks with reliability, programmability, ability to output substantial force, and durability, restricting their full potential. Here, we present a printable self-sustained compliant oscillator that generates periodic actuation using only constant electrical power, without discrete components or electronic control hardware. This oscillator is robust (9 out of 10 prototypes worked successfully on the first try), configurable (with tunable periods from 3 s to 12 s), powerful (can overcome hydrodynamic resistance to…
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