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Electrical properties of cement-based composites with carbon nanotubes, graphene, and graphite nanofibers

  • Doo Yeol Yoo
  • , Ilhwan You
  • , Seung Jung Lee*
  • *Corresponding author for this work
  • Hanyang University
  • Korea University
  • Korea Railroad Research Institute

Research output: Contribution to journalJournal articlepeer-review

Abstract

This study was conducted to evaluate the effect of the carbon-based nanomaterial type on the electrical properties of cement paste. Three different nanomaterials, multi-walled carbon nanotubes (MWCNTs), graphite nanofibers (GNFs), and graphene (G), were incorporated into the cement paste at a volume fraction of 1%. The self-sensing capacity of the cement composites was also investigated by comparing the compressive stress/strain behaviors by evaluating the fractional change of resistivity (FCR). The electrical resistivity of the plain cement paste was slightly reduced by adding 1 vol % GNFs and G, whereas a significant decrease of the resistivity was achieved by adding 1 vol % MWCNTs. At an identical volume fraction of 1%, the composites with MWCNTs provided the best self-sensing capacity with insignificant noise, followed by the composites containing GNFs and G. Therefore, the addition of MWCNTs was considered to be the most effective to improve the self-sensing capacity of the cement paste. Finally, the composites with 1 vol % MWCNTs exhibited a gauge factor of 113.2, which is much higher than commercially available strain gauges.

Original languageEnglish
Article number1064
JournalSensors
Volume17
Issue number5
DOIs
StatePublished - 2017.05.8

Keywords

  • Cement composites
  • Electrical resistivity
  • Gauge factor
  • Nanomaterials
  • Self-sensing capacity

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