Overtwisting and Coiling Highly Enhances Strain Generation of Twisted String Actuators
Revanth Konda, David Bombara, Jun Zhang

TL;DR
This study demonstrates that overtwisting and coiling in twisted string actuators can be controlled to produce uniform coils, significantly increasing strain capacity and improving their robotic application potential.
Contribution
First experimental investigation of overtwisting in TSAs with different stiffnesses, enabling consistent coil formation and substantially enhancing strain generation.
Findings
Overtwisting achieves up to 70% strain in stiff TSAs.
Overtwisting achieves up to 60% strain in compliant TSAs.
Uniform coil formation improves TSA performance and reliability.
Abstract
Twisted string actuators (TSAs) have exhibited great promise in robotic applications by generating high translational force with low input torque. To further facilitate their robotic applications, it is strongly desirable but challenging to enhance their consistent strain generation while maintaining compliance. Existing studies predominantly considered overtwisting and coiling after the regular twisting stage to be undesirable non-uniform and unpredictable knots, entanglements, and coils formed to create an unstable and failure-prone structure. Overtwisting would work well for TSAs when uniform coils can be consistently formed. In this study, we realize uniform and consistent coil formation in overtwisted TSAs, which greatly increases their strain. Furthermore, we investigate methods for enabling uniform coil formation upon overtwisting the strings in a TSA and present a procedure to…
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Taxonomy
TopicsAdvanced Sensor and Energy Harvesting Materials · Advanced Materials and Mechanics · Electrospun Nanofibers in Biomedical Applications
