Effects of Crosslink Coagent on the Conductivity and Breakdown strength of XLPE
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摘要
Cross-linked polyethylene (XLPE) has been widely used as insulation material in power cables. However, in order to ensure sufficient crosslinking degree of insulation, the content of peroxide initiator in the material component is excessively high in some cases, which leads to a large number of byproducts in the crosslinking process. Some of these crosslinking by-products cannot be removed through the degassing process, resulting in impurities and micropores in the cable insulation, and this may threaten the long-term operation of the cable. In order to reduce the content of peroxide initiator, trimethylolpropane trimethacrylate (TMPTMA) was selected as a coagent for crosslinking. The thermal elongation results indicate that under the similar thermo-mechanical stability, DCP dosage can be reduced to from 2.0 phr to 1.6 phr by using 0.3 phr TMPTMA And by adding 0.5 phr TMPTMA, the DCP dosage can be reduced to 1.4 phr. The infrared spectroscopy results prove that TMPTMA have been grafted onto XLPE molecules during crosslinking. The electrical conductivity results show that after the introduction of TMPTMA, the conductivity of modified XLPE has been decreased significantly and the temperature dependence of conductivity of XLPE is obviously suppressed. Besides, the XLPE-TMPTMA materials exhibit evidently higher DC breakdown strength than XLPE.
关键词
cross-linked polyethylene;conductivity;crosslink coagent;DC breakdown strength
报告人
Xu Yang
China; School of Electrical and Electronic Engineering; Harbin;Key Laboratory of Dielectric Engineering; Harbin University of Science and Technology

稿件作者
Xu Yang China; School of Electrical and Electronic Engineering; Harbin;Key Laboratory of Dielectric Engineering; Harbin University of Science and Technology
Chun Yang LI Harbin university of science and technology
Xin Dong Zhao Harbin University of Science and Technology
Hong Zhao Harbin University of Science and Technology
Xuan Wang China; School of Electrical and Electronic Engineering; Harbin;Key Laboratory of Dielectric Engineering; Harbin University of Science and Technology
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重要日期
  • 会议日期

    09月25日

    2022

    09月29日

    2022

  • 08月15日 2022

    提前注册日期

  • 09月10日 2022

    报告提交截止日期

  • 11月10日 2022

    注册截止日期

  • 11月30日 2022

    初稿截稿日期

  • 11月30日 2022

    终稿截稿日期

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IEEE DEIS
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Chongqing University
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