Electrical and electromagnetic interference shielding characteristics of GNP/UHMWPE composites
Экранирующие характеристики композитов GNP/UHMWPE в отношении электрических помех и электромагнитных помех
2016-04-13
SCID: 54.1/d57m8r58
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EMI shieldingUHMWPE compositeselectrical percolation thresholdgraphene nanoplateletssegregated conductive network
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Abstract (AI)
Abstract Conductive polymer composites (CPC) are attractive materials for a wide range of applications because of their weight, corrosion resistivity, design flexibility and low cost. In the present work, the electrical and electromagnetic interference (EMI) shielding characteristics of graphene nanoplatelets (GNP)/ultrahigh molecular weight polyethylene (UHMWPE) composites filled with up to 40 wt% GNP were investigated. In addition, the intrinsic conductivity of the GNP network was estimated based on the statistical power law and the rule of mixtures for randomly oriented filler particles in insulating matrix. Due to the formation of a segregated conductive network at the external surface of UHMWPE powder, an electrical percolation threshold of between 2 and 3 wt% GNP was obtained. At GNP loading of 15 wt%, the composite exhibited an EMI shielding effectiveness of 33 dB, corresponding to 99.95% blocking of the EMI.
Key Findings
1
A segregated conductive network formed on the external surfaces of UHMWPE powder, producing an electrical percolation threshold between 2 and 3 wt% GNP.
2
At 15 wt% GNP, the composite achieved an EMI shielding effectiveness of 33 dB, corresponding to 99.95% EMI blocking.
3
GNP/UHMWPE composites containing up to 40 wt% graphene nanoplatelets were evaluated for electrical conductivity and electromagnetic interference shielding.
4
The intrinsic conductivity of the GNP network was estimated using a statistical power law and a rule of mixtures for randomly oriented fillers in an insulating matrix.
Research Object
GNP/UHMWPE composites
Research Subject
Electrical conductivity and electromagnetic interference shielding characteristics, including percolation threshold and shielding effectiveness, as functions of GNP loading
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2016-04-13
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