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J Electr Electron Mater : Journal of Electrical and Electronic Materials

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전력케이블용 친환경 반도전 컴파운드의 결정화도와 분산 특성의 상관관계에 대한 연구

한재규, 윤준형, 성수연, 전근배, 박동하

A Study on the Correlation Between Crystallinity and Dispersion Characteristics of Eco-Friendly Semiconductive for Power Cable

Jae Gyu Han, Jun Hyeong Yun, Soo Yeon Seong, Geun Bae Jeon, Dong Ha Park
J Electr Electron Mater 2020;33(5):400-404.
Published online: September 1, 2020
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In this paper, we study the correlation between the crystallinity of semiconductive compounds for eco-friendly power cables and the dispersive properties of carbon black. The crystal structure of the polymer material is advantageous for mechanical properties and heat-resistance. However, the polymer acts as an inhibitor to the dispersibility of carbon black. The purpose of this study is to develop a TPE semiconductive compound technology. The high heat resistance and ultra-smoothness characteristics which are required for high voltage and ultra-high voltage cables should be satisfied by designing and optimizing the structure of a non-crosslinking-type eco-friendly TPE semiconductive compound. The application of excess TPE resin was found to not only inhibit the processability in the compounding process, but also reduced the dispersion properties of carbon black due to higher crystallinity. After the crystallinity of the compound was identified through DSC analysis, it was compared with the related dispersion characteristics. Through this analysis and comparison, we designed the optimal structure of the eco-friendly TPE semiconductive compound.

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A Study on the Correlation Between Crystallinity and Dispersion Characteristics of Eco-Friendly Semiconductive for Power Cable
J Electr Electron Mater. 2020;33(5):400-404.   Published online September 1, 2020
Download Citation

Download a citation file in RIS format that can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Reference Manager.

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A Study on the Correlation Between Crystallinity and Dispersion Characteristics of Eco-Friendly Semiconductive for Power Cable
J Electr Electron Mater. 2020;33(5):400-404.   Published online September 1, 2020
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