会议论文详细信息
Dielectrics 2013
Absorption current behaviour of polyethylene/silica nanocomposites
Lau, K.Y.^1,3 ; Vaughan, A.S.^1 ; Chen, G.^1 ; Hosier, I.L.^1 ; Holt, A.F.^2
School of Electronics and Computer Science, University of Southampton, Southampton SO17 1BJ, United Kingdom^1
School of Chemistry, University of Southampton, Southampton SO17 1BJ, United Kingdom^2
Faculty of Electrical Engineering, Universiti Teknologi Malaysia, 81310 Johor Bahru, Malaysia^3
关键词: Absorption currents;    Charge accumulation;    Charge transport mechanisms;    Polyethylene nanocomposites;    Semicrystalline polyethylenes;    Silane coupling agent;    Space-charge accumulation;    Time domain response;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/472/1/012003/pdf
DOI  :  10.1088/1742-6596/472/1/012003
来源: IOP
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【 摘 要 】

Absorption current is an important characteristic of polymers with regard to their time-domain response to a direct current (DC) poling field. This is because the results of absorption current measurements can be used to gain understanding of the relationship between space charge accumulation and movement. In semicrystalline polyethylene, for example, charge accumulation is likely to be influenced by the presence of charge trapping sites, which are associated with interfaces between the crystalline and amorphous phases. With the addition of a nanofiller, the charge transport mechanism will become more complicated than in the unfilled polymer, as the inclusion of the nanofiller will introduce nanofiller/polymer interfaces. The presence of such interfaces will affect the current flow due to the introduction or modification of the distribution of trapping sites within the system. In this paper, we report on an investigation into the absorption current behaviour of polyethylene nanocomposites containing 0 wt%, 2 wt%, 5 wt% and 10 wt% of silica nanofiller, either untreated or treated using trimethoxy(propyl)silane coupling agent. Our results indicate that the absorption current behaviour of the polyethylene was affected by the presence of the nanosilica. While the current behaviour through the unfilled polymer decreases with time in a conventional manner, all nanocomposites reveal an initial decrease followed by a period in which the current increases with increasing time of DC field application.

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