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- W2904356426 abstract "Carbon-based nanomaterials have widely been used to enhance the thermal and electrical properties of polymer composites with the aid of miniaturization of electronic devices that require fast heat dissipation and electromagnetic interference shielding at a desired level. A combination of different carbon nanofillers can lead to a strong synergistic effect by creating the electron hopping pathway and conductive network. Here, we fabricate the hybrid nanocomposites composed of two-dimensional graphite nanoplatelets, one-dimensional microscale carbon fibers, and one-dimensional nanoscale multiwalled carbon nanotubes. The synergistic improvement of electrical and thermal conductivities of the hybrid nanocomposites is achieved by a three-dimensional network formation among the microscale and nanoscale fillers. A Mori-Tanaka averaging scheme with perfect and imperfect interfacial resistances under uni-directional and random fiber orientations is presented to predict the synergistic improvement of thermal conductivity of the nanocomposites. A transient temperature response in the nanocomposites is investigated to evaluate heat dissipation capability in which heat transfer rate is enhanced in the case of hybrid nanocomposites. Finite element simulation results are in a good agreement with the transient temperature response experimentally obtained." @default.
- W2904356426 created "2018-12-22" @default.
- W2904356426 creator A5024846854 @default.
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- W2904356426 date "2019-03-01" @default.
- W2904356426 modified "2023-09-23" @default.
- W2904356426 title "Synergistic improvement of electrical and thermal conductivities of carbon-based nanocomposites and its prediction by Mori-Tanaka scheme with interfacial resistances" @default.
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- W2904356426 doi "https://doi.org/10.1016/j.compstruct.2018.12.018" @default.
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