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由钓鱼线和缝纫线制成的人工肌肉。

Artificial muscles from fishing line and sewing thread.

机构信息

The Alan G. MacDiarmid NanoTech Institute, University of Texas at Dallas, Richardson, TX 75083, USA.

出版信息

Science. 2014 Feb 21;343(6173):868-72. doi: 10.1126/science.1246906.

Abstract

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.

摘要

强力、大冲程、高压力人工肌肉的高成本,加上低循环寿命、滞后和低效率等性能限制,限制了其应用。我们证明,用于钓鱼线和缝纫线的廉价高强度聚合物纤维可以通过扭转插入轻松转换,提供快速、可扩展、无滞后、长寿命的拉伸和扭转肌肉。极端扭转产生的螺旋肌肉可以收缩 49%,举起的负载比相同长度和重量的人类肌肉重 100 多倍,每公斤肌肉重量可产生 5.3 千瓦的机械功,与喷气发动机相当。还展示了响应温度改变孔隙率的编织纺织品和可以帮助节能的活动百叶窗。大冲程拉伸致动在理论和实验上都表明是由扭转致动引起的。

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