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纳米复合电介质击穿与耐电晕性的纳米掺杂效应

Translated title of the contribution: Nano-doping Effects on Dielectric Breakdown and Corona-resistance Properties of Polymeric Nanocomposites
  • Dongri Xie
  • , Daomin Min
  • , Yin Huang
  • , Wenbin Kang
  • , Shuangzan Ren
  • , Shengtao Li
  • Xi'an Jiaotong University
  • State Grid Corporation of China
  • State Grid Shaanxi Electric Power Research Institute

Research output: Contribution to journalArticlepeer-review

12 Scopus citations

Abstract

Nano-doping has a great influence on electrical properties of polymeric dielectrics. Taking pure polyimide 100HN and nano-doping polyimide 100CR from DuPont as research materials, experiments on high-field conductance, surface potential decay (SPD), DC breakdown and corona-resistance were carried out. The experimental results show that the DC breakdown strength of 100CR decreases by 6.4% compared with 100HN, whilst its corona-resistance time increases by 400%, indicating that the nanoparticles could play different mechanisms in two performances. The trap parameters extracted from SPD results indicate that the deep trap energy and density for 100CR are both reduced. The high-field conductance results indicate that conductivity and carrier mobility are both increased for 100CR. The eroded surface morphology after corona by scanning electron microscope show groove channel of 100HN and layered rings with different erosion degrees of 100CR, and the eroded area of 100CR is enlarged. It is concluded that the nanofillers affect the conductance characteristics by changing the trap characteristics, and finally affect the DC breakdown performance. For the corona-resistant mechanism, a synergistic effect of surface collision scattering and charge dissipation is proposed to interpret the layered rings and better corona-resistance performance of nanocomposite.

Translated title of the contributionNano-doping Effects on Dielectric Breakdown and Corona-resistance Properties of Polymeric Nanocomposites
Original languageChinese (Traditional)
Pages (from-to)5909-5918
Number of pages10
JournalZhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering
Volume38
Issue number19
DOIs
StatePublished - 5 Oct 2018

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