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Hierarchically buckled sheath-core fibers for superelastic electronics, sensors, and muscles
by
Fang, S.
, Galvão, D. S.
, Wang, R.
, Haines, C. S.
, Qian, D.
, Lv, W.
, Di, J.
, Wang, X.
, Lepró, X.
, Lima, M. D.
, Chong, Y. T.
, Zhang, R.
, Yuan, N. Y.
, Lee, D. W.
, Baughman, R. H.
, Chen, M. J.
, Ovalle-Robles, R.
, Yin, S. G.
, Yin, Q.
, Lu, H.
, Liu, Z. F.
, Zhang, R. C.
, Jiang, N.
, Zhang, M.
, Dong, C.
, Moura, F. A.
, Wang, H. Y.
, Ding, J. N.
in
Actuation
/ Avionics
/ Carbon
/ Carbon nanotubes
/ Conductivity
/ Fabrication
/ Fibers
/ Materials science
/ Muscles
/ Muscular system
/ Nanotechnology
/ Poisson's ratio
/ Rubber
/ Sensors
/ Superelasticity
2015
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Hierarchically buckled sheath-core fibers for superelastic electronics, sensors, and muscles
by
Fang, S.
, Galvão, D. S.
, Wang, R.
, Haines, C. S.
, Qian, D.
, Lv, W.
, Di, J.
, Wang, X.
, Lepró, X.
, Lima, M. D.
, Chong, Y. T.
, Zhang, R.
, Yuan, N. Y.
, Lee, D. W.
, Baughman, R. H.
, Chen, M. J.
, Ovalle-Robles, R.
, Yin, S. G.
, Yin, Q.
, Lu, H.
, Liu, Z. F.
, Zhang, R. C.
, Jiang, N.
, Zhang, M.
, Dong, C.
, Moura, F. A.
, Wang, H. Y.
, Ding, J. N.
in
Actuation
/ Avionics
/ Carbon
/ Carbon nanotubes
/ Conductivity
/ Fabrication
/ Fibers
/ Materials science
/ Muscles
/ Muscular system
/ Nanotechnology
/ Poisson's ratio
/ Rubber
/ Sensors
/ Superelasticity
2015
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Hierarchically buckled sheath-core fibers for superelastic electronics, sensors, and muscles
by
Fang, S.
, Galvão, D. S.
, Wang, R.
, Haines, C. S.
, Qian, D.
, Lv, W.
, Di, J.
, Wang, X.
, Lepró, X.
, Lima, M. D.
, Chong, Y. T.
, Zhang, R.
, Yuan, N. Y.
, Lee, D. W.
, Baughman, R. H.
, Chen, M. J.
, Ovalle-Robles, R.
, Yin, S. G.
, Yin, Q.
, Lu, H.
, Liu, Z. F.
, Zhang, R. C.
, Jiang, N.
, Zhang, M.
, Dong, C.
, Moura, F. A.
, Wang, H. Y.
, Ding, J. N.
in
Actuation
/ Avionics
/ Carbon
/ Carbon nanotubes
/ Conductivity
/ Fabrication
/ Fibers
/ Materials science
/ Muscles
/ Muscular system
/ Nanotechnology
/ Poisson's ratio
/ Rubber
/ Sensors
/ Superelasticity
2015
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Hierarchically buckled sheath-core fibers for superelastic electronics, sensors, and muscles
Journal Article
Hierarchically buckled sheath-core fibers for superelastic electronics, sensors, and muscles
2015
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Overview
Superelastic conducting fibers with improved properties and functionalities are needed for diverse applications. Here we report the fabrication of highly stretchable (up to 1320%) sheath-core conducting fibers created by wrapping carbon nanotube sheets oriented in the fiber direction on stretched rubber fiber cores. The resulting structure exhibited distinct short- and long-period sheath buckling that occurred reversibly out of phase in the axial and belt directions, enabling a resistance change of less than 5% for a 1000% stretch. By including other rubber and carbon nanotube sheath layers, we demonstrated strain sensors generating an 860% capacitance change and electrically powered torsional muscles operating reversibly by a coupled tension-to-torsion actuation mechanism. Using theory, we quantitatively explain the complementary effects of an increase in muscle length and a large positive Poisson's ratio on torsional actuation and electronic properties.
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