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A study on the properties of semiconductive shield materials for power cables in accordance with content of multi-walled carbon nanotubes

  • J. S. Yang*
  • , D. H. Shin
  • , H. Yang
  • , J. H. Kook
  • , N. J. Park
  • , C. W. Nah
  • , D. H. Park
  • *Corresponding author for this work
  • Wonkwang University
  • Jeonbuk National University

Research output: Contribution to conferenceConference paperpeer-review

Abstract

This paper investigated the chemical, mechanical, and structural properties of carbon nanotubes by altering their contents in order to be used as component parts for semiconductive shields used in underground power transmission cables. A multi luminescence spectrometer MLA-GOLDS was used to investigate the chemical properties of specimens. In addition, a density meter EW-200SG was used to investigate the mechanical properties of specimens. A FE-SEM S-4300 meter by Hitachi was used to apply dispersions of CNT (Carbon nanotube). As a result, the cl intensity, showing the effects of oxidation, decreased in CNT by approximately 1[wt%], and the density values for semiconductive shield materials with CNT and EEA (Ethylene Ethyl Acrylate) was lower than commercial semiconductive shield materials. Furthermore, dispersion properties showed increases according to the increase in CNT ratio. These properties demonstrated the best conditions at 5wt%. Therefore, it was evident that such exceptional chemical, mechanical, and structural properties could be improved with just a small amount of CNT.

Original languageEnglish
Title of host publication2007 International Conference on Solid Dielectrics, ICSD
Pages322-325
Number of pages4
DOIs
StatePublished - 2007
Event2007 International Conference on Solid Dielectrics, ICSD - Winchester, United Kingdom
Duration: 2007.07.82007.07.13

Publication series

Name2007 International Conference on Solid Dielectrics, ICSD

Conference

Conference2007 International Conference on Solid Dielectrics, ICSD
Country/TerritoryUnited Kingdom
CityWinchester
Period07.07.807.07.13

Keywords

  • Carbon nanotube
  • Chemical luminescence
  • FE-SEM
  • Semiconducting materials

Quacquarelli Symonds(QS) Subject Topics

  • Engineering - Electrical & Electronic
  • Engineering - Petroleum

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