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February 1, 1999Physical Review Letters1,485 citations

Elastic and Shear Moduli of Single-Walled Carbon Nanotube Ropes

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JSJean‐Paul SalvetatGBG. A. D. BriggsJBJean–Marc Bonard

Key Points

  • To characterize the elastic and shear moduli of single-walled carbon nanotube ropes for advanced applications.
  • Measured moduli using atomic force microscopy on a special substrate.
  • Focused on individual single-walled nanotube ropes.
  • Elastic modulus measured at approximately 1 TPa.
  • Shear modulus measured at approximately 1 GPa.
  • Observed low intertube shear stiffness impacting flexural behavior.

Abstract

Carbon nanotubes are believed to be the ultimate low-density high-modulus fibers, which makes their characterization at nanometer scale vital for applications. By using an atomic force microscope and a special substrate, the elastic and shear moduli of individual single-walled nanotube (SWNT) ropes were measured to be of the order of 1 TPa and 1 GPa, respectively. In contrast to multiwalled nanotubes, an unexpectedly low intertube shear stiffness dominated the flexural behavior of the SWNT ropes. This suggests that intertube cohesion should be improved for applications of SWNT ropes in high-performance composite materials.

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Cite This Study

Salvetat et al. (1999) studied this question.

synapsesocial.com/papers/69da290b84371aa676a3ce86https://doi.org/10.1103/physrevlett.82.944
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