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Artificial muscles from fishing line and sewing thread

journal contribution
posted on 2024-11-16, 01:59 authored by Carter S Haines, Marcio D Lima, Na Li, Geoffrey SpinksGeoffrey Spinks, Javad ForoughiJavad Foroughi, John Madden, Shi Hyeong Kim, Shaoli Fang, Monica Jung de Andrade, Fatma Goktepe, Ozer Goktepe, Seyed M Mirvakili, Sina Naficy, Xavier Lepro, Jiyoung Oh, Mikhail E Kozlov, Seon Jeong Kim, Xiuru Xu, Benjamin J Swedlove, Gordon WallaceGordon Wallace, Ray H Baughman
The high cost of powerful, large-stroke, high-stress artificial muscles has combined with performance limitations such as low cycle life, hysteresis, and low efficiency to restrict applications. We demonstrated that inexpensive high-strength polymer fibers used for fishing line and sewing thread can be easily transformed by twist insertion to provide fast, scalable, nonhysteretic, long-life tensile and torsional muscles. Extreme twisting produces coiled muscles that can contract by 49%, lift loads over 100 times heavier than can human muscle of the same length and weight, and generate 5.3 kilowatts of mechanical work per kilogram of muscle weight, similar to that produced by a jet engine. Woven textiles that change porosity in response to temperature and actuating window shutters that could help conserve energy were also demonstrated. Large-stroke tensile actuation was theoretically and experimentally shown to result from torsional actuation.

Funding

ARC Centre of Excellence - Australian Centre for Electromaterials Science

Australian Research Council

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Mechanical advantage: biomimetic artificial muscles for micro-machines

Australian Research Council

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History

Citation

Haines, C. S., Lima, M. D., Li, N., Spinks, G. M., Foroughi, J., Madden, J. D. W., Kim, S., Fang, S., de Andrade, M., Goktepe, F., Goktepe, O., Mirvakili, S. M., Naficy, S., Lepro, X., Oh, J., Kozlov, M. E., Kim, S., Xu, X., Swedlove, B. J., Wallace, G. G. & Baughman, R. H. (2014). Artificial muscles from fishing line and sewing thread. Science, 343 (6173), 868-872.

Journal title

Science

Volume

343

Issue

6173

Pagination

868-872

Language

English

RIS ID

87952

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