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Cited 382 time in webofscience Cited 395 time in scopus
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Electrically, Chemically, and Photonically Powered Torsional and Tensile Actuation of Hybrid Carbon Nanotube Yarn Muscles

Authors
Lima, Marcio D.Li, Nade Andrade, Monica JungFang, ShaoliOh, JiyoungSpinks, Geoffrey M.Kozlov, Mikhail E.Haines, Carter S.Suh, DongseokForoughi, JavadKim, Seon JeongChen, YongshengWare, TaylorShin, Min KyoonMachado, Leonardo D.Fonseca, Alexandre F.Madden, John D. W.Voit, Walter E.Galvao, Douglas S.Baughman, Ray H.
Issue Date
Nov-2012
Publisher
AMER ASSOC ADVANCEMENT SCIENCE
Citation
SCIENCE, v.338, no.6109, pp.928 - 932
Indexed
SCIE
SCOPUS
Journal Title
SCIENCE
Volume
338
Number
6109
Start Page
928
End Page
932
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/27450
DOI
10.1126/science.1226762
ISSN
0036-8075
Abstract
Artificial muscles are of practical interest, but few types have been commercially exploited. Typical problems include slow response, low strain and force generation, short cycle life, use of electrolytes, and low energy efficiency. We have designed guest-filled, twist-spun carbon nanotube yarns as electrolyte-free muscles that provide fast, high-force, large-stroke torsional and tensile actuation. More than a million torsional and tensile actuation cycles are demonstrated, wherein a muscle spins a rotor at an average 11,500 revolutions/minute or delivers 3% tensile contraction at 1200 cycles/minute. Electrical, chemical, or photonic excitation of hybrid yarns changes guest dimensions and generates torsional rotation and contraction of the yarn host. Demonstrations include torsional motors, contractile muscles, and sensors that capture the energy of the sensing process to mechanically actuate.
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COLLEGE OF ENGINEERING (서울 바이오메디컬공학전공)
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