Molecular dynamics (MD) simulations under transverse shear, uniaxial compression, and pullout loading configurations are reported for multiwall carbon nanotubes (MWCNTs) with different fraction of interwall sp(3) bonds. The interwall shear coupling in MWCNTs is shown to have a strong influence on load transfer and compressive load carrying capacity. A new continuum shear-coupled-shell model is developed to predict MWCNT buckling, which agrees very well with all MD results. This work demonstrates that MWCNTs can be engineered through control of interwall sp(3) coupling to increase load transfer, buckling strength, and energy dissipation by nanotube pullout, all necessary features for good performance of nanocomposites.
机构:
Univ Nevada, Dept Phys, Las Vegas, NV 89154 USA
Univ Nevada, High Pressure Sci & Engn Ctr, Las Vegas, NV 89154 USA
Meadows Sch, Dept Sci, Las Vegas, NV 89128 USAUniv Nevada, Dept Phys, Las Vegas, NV 89154 USA
Pietro, David Santo
Tang, Chun
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Univ Nevada, Dept Phys, Las Vegas, NV 89154 USA
Univ Nevada, High Pressure Sci & Engn Ctr, Las Vegas, NV 89154 USAUniv Nevada, Dept Phys, Las Vegas, NV 89154 USA
Tang, Chun
Chen, Changfeng
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Univ Nevada, Dept Phys, Las Vegas, NV 89154 USA
Univ Nevada, High Pressure Sci & Engn Ctr, Las Vegas, NV 89154 USAUniv Nevada, Dept Phys, Las Vegas, NV 89154 USA