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June 12, 2000Physical Review Letters2,695 citations

Tensile Loading of Ropes of Single Wall Carbon Nanotubes and their Mechanical Properties

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MYMin‐Feng YuBFBradley S. FilesSASivaram Arepalli

Key Points

  • This research investigates the mechanical response of single wall carbon nanotube ropes under tensile loading.
  • Measured mechanical response of 15 single wall carbon nanotube ropes under tensile load.
  • Obtained strain data for 8 ropes which broke at 5.3% strain or lower.
  • Applied a model that assumes load is carried by the nanotubes on the perimeter of each rope.
  • Average breaking strength of SWCNTs on the perimeter ranges from 13 to 52 GPa (mean 30 GPa).
  • Average Young's modulus values determined range from 320 to 1470 GPa (mean 1002 GPa).

Abstract

The mechanical response of 15 single wall carbon nanotube (SWCNT) ropes under tensile load was measured. For 8 of these ropes strain data were obtained and they broke at strain values of 5.3% or lower. The force-strain data are well fit by a model that assumes the load is carried by the SWCNTs on the perimeter of each rope. This model provides an average breaking strength of SWCNTs on the perimeter of each rope; the 15 values range from 13 to 52 GPa (mean 30 GPa). Based on the same model the 8 average Young's modulus values determined range from 320 to 1470 GPa (mean 1002 GPa).

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Cite This Study

Yu et al. (2000) studied this question.

synapsesocial.com/papers/69d832e93eff0c9dfaae38abhttps://doi.org/10.1103/physrevlett.84.5552
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