Electrical and dielectric behaviors of dry-mixed CNT/UHMWPE nanocomposites
Электрические и диэлектрические свойства нанокомпозитов CNT/UHMWPE, полученных сухим смешением
2013-10-22
SCID: 54.1/s8cemwpr
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AC electrical conductivityCNT/UHMWPE nanocompositesdielectric propertieselectrical percolation thresholdsegregated microstructure
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Abstract (AI)
Carbon nanotube (CNT)/ultrahigh-molecular weight polyethylene (UHMWPE) nanocomposite with an electrical percolation threshold of only 0.1 wt% was prepared by simple dry mixing followed by compression molding. The nanocomposite microstructure, direct current and alternating current (AC) electrical conductivities, conduction mechanisms, and dielectric properties in the 10 1 –10 5 Hz frequency range have been investigated. Due to the localization of the nanofiller at the surface of UHMWPE powder particles, a segregated microstructure within the polymer matrix was created. Nanocomposites filled with 0.125–0.5 wt% CNT were found to follow the typical universal dynamic response behavior, and the characteristic frequency was found to increase with the increase in CNT concentration. At CNT concentration ≥ 0.5 wt%, the AC conductivity was found to be frequency independent over the entire frequency range studied.
Key Findings
1
At CNT concentrations of at least 0.5 wt%, AC conductivity became frequency independent from 10¹ to 10⁵ Hz.
2
Dry mixing followed by compression molding produced CNT/UHMWPE nanocomposites with an exceptionally low electrical percolation threshold of 0.1 wt% CNT.
3
Localization of CNTs on UHMWPE powder-particle surfaces created a segregated microstructure within the polymer matrix.
4
Nanocomposites containing 0.125–0.5 wt% CNT exhibited typical universal dynamic response behavior in the investigated frequency range.
5
The characteristic frequency increased as CNT concentration increased.
Research Object
Dry-mixed CNT/UHMWPE nanocomposites
Research Subject
Electrical conductivity, conduction mechanisms, dielectric properties, and frequency-dependent AC response as functions of CNT concentration and frequency
Publication Details
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2013-10-22
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