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Nanotube film based on single-wall carbon nanotubes for strain sensing

Nanotechnology · 2004 · Vol. 15(3) · pp. 379–382
Prasad DharapZhiling LiSatish NagarajaiahEnrique V. Barrera

Abstract

Carbon nanotubes change their electronic properties when subjected to strains. In this study, the strain sensing characteristic of carbon nanotubes is used to develop a carbon nanotube film sensor that can be used for strain sensing on the macro scale. The carbon nanotube film is isotropic due to randomly oriented bundles of single-wall carbon nanotubes (SWCNTs). Using experimental results it is shown that there is a nearly linear change in voltage across the film when it is subjected to tensile and compressive stresses. The change in voltage is measured by a movable four-point probe in contact with the film. Multidirectional and multiple location strains can be measured by the isotropic carbon nanotube film.

Carbon Nanotubes in CompositesSmart Materials for ConstructionMechanical and Optical ResonatorsMaterials scienceCarbon nanotubeCarbon nanotube actuatorsComposite materialIsotropyNanotubeMechanical properties of carbon nanotubesNanotechnologyStrain (injury)Carbon fibers

Funding

  • National Aeronautics and Space Administration
Citations
514
FWCI
9.07
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References
Load transfer in carbon nanotube epoxy composites
Applied Physics Letters · 1998 · 1,648 citations
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