• 대한전기학회
Mobile QR Code QR CODE : The Transactions of the Korean Institute of Electrical Engineers
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Title Evaluation of Water Tree Propagation and Dielectric Strength in Tree-Retardant XLPE using FEM Electric Field Analysis
Authors 서예슬(Ye-Seul Seo) ; 김가현(Ga-Hyun Kim) ; 최현준(Hyen-Jun Choi) ; 임장섭(Jang-Seob Lim)
DOI https://doi.org/10.5370/KIEE.2026.75.8.1893
Page pp.1893-1898
Keywords Tree retardant XLPE; Water tree; Finite Element Method(FEM); Dielectric breakdown strength
Abstract To secure the reliability of extra high voltage power cables, evaluating the properties of TR XLPE is essential. This study fabricated pinhole defect specimens of commercial XLPE and TR XLPE A, B to verify their water tree suppression and initial dielectric strength. FEM analysis quantified an electric field concentration of 475kV/mm at the defect tip, which coincided with the actual water tree initiation site in accelerated aging tests. The maximum water tree growth lengths were 331μm for TR XLPE A and 212μm for TR XLPE B. Weibull analysis of initial AC breakdown strength showed that the scale parameter of TR materials, 11.8kV/mm, improved by 5.4% over commercial XLPE, and the shape parameter of TR XLPE B increased by 15.4%. By correlating numerical electric field stress with physical degradation and statistical breakdown thresholds, this study provides baseline indicators that can be utilized as a standard for evaluating the secondary dielectric strength of aged cable insulation.