• Title of article

    Enhancement of mechanical performance of epoxy/carbon fiber laminate composites using single-walled carbon nanotubes

  • Author/Authors

    Behnam Ashrafi، نويسنده , , Jingwen Guan، نويسنده , , Vahid Mirjalili، نويسنده , , Yunfa Zhang، نويسنده , , Li Chun، نويسنده , , Pascal Hubert and Thomas A. Schmidt، نويسنده , , Benoit Simard، نويسنده , , Christopher T. Kingston، نويسنده , , Orson Bourne، نويسنده , , J. Andrew Johnston، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2011
  • Pages
    10
  • From page
    1569
  • To page
    1578
  • Abstract
    Carbon nanotubes (CNT) in their various forms have great potential for use in the development of multifunctional multiscale laminated composites due to their unique geometry and properties. Recent advancements in the development of CNT hierarchical composites have mostly focused on multi-walled carbon nanotubes (MWCNT). In this work, single-walled carbon nanotubes (SWCNT) were used to develop nano-modified carbon fiber/epoxy laminates. A functionalization technique based on reduced SWCNT was employed to improve dispersion and epoxy resin-nanotube interaction. A commercial prepregging unit was then used to impregnate unidirectional carbon fiber tape with a modified epoxy system containing 0.1 wt% functionalized SWCNT. Impact and compression-after-impact (CAI) tests, Mode I interlaminar fracture toughness and Mode II interlaminar fracture toughness tests were performed on laminates with and without SWCNT. It was found that incorporation of 0.1 wt% of SWCNT resulted in a 5% reduction of the area of impact damage, a 3.5% increase in CAI strength, a 13% increase in Mode I fracture toughness, and 28% increase in Mode II interlaminar fracture toughness. A comparison between the results of this work and literature results on MWCNT-modified laminated composites suggests that SWCNT, at similar loadings, are more effective in enhancing the mechanical performance of traditional laminated composites.
  • Keywords
    A. Carbon nanotube , A. Carbon fiber , B. Impact behavior , B. Interface , Multiscale composites
  • Journal title
    COMPOSITES SCIENCE AND TECHNOLOGY
  • Serial Year
    2011
  • Journal title
    COMPOSITES SCIENCE AND TECHNOLOGY
  • Record number

    1043825