Hongjian Liu, Shihang Wang, Yifan Wu, 等. Additive Interaction Effect on High-Temperature Stability of XLPE Insulation for High-Voltage Cables[J]. 高电压(英文), 2025,10(6).
Hongjian Liu, Shihang Wang, Yifan Wu, et al. Additive Interaction Effect on High-Temperature Stability of XLPE Insulation for High-Voltage Cables[J]. High Voltage, 2025, 10(6).
Hongjian Liu, Shihang Wang, Yifan Wu, 等. Additive Interaction Effect on High-Temperature Stability of XLPE Insulation for High-Voltage Cables[J]. 高电压(英文), 2025,10(6). DOI: 10.1049/hve2.70130.
Hongjian Liu, Shihang Wang, Yifan Wu, et al. Additive Interaction Effect on High-Temperature Stability of XLPE Insulation for High-Voltage Cables[J]. High Voltage, 2025, 10(6). DOI: 10.1049/hve2.70130.
Additive Interaction Effect on High-Temperature Stability of XLPE Insulation for High-Voltage Cables
摘要
Abstract
The high-voltage cable is one of the key equipment for power transmission
and its reliable operation depends on the crosslinked polyethylene (XLPE) insulation. The XLPE insulation not only requires excellent dielectric performance but also remarkable high-temperature stabilities
including the antiscorching characteristic during the extrusion process evaluated by the torque curves
antioxidation properties measured by oxidation induction time (OIT) and the thermal elongation determined by the hot set method. In general
the high-temperature stabilities are significantly influenced by the additives. This paper proposes and substantiates the concept of regulating the high-temperature stabilities of XLPE insulation by the synergistic effects of antioxidants and crosslinking agents. Specifically
the positive effect of antioxidants on the antiscorching characteristic
thermal elongation and OIT of XLPE insulation is related with the dicumyl peroxide content. This study illustrates the intricate correlation between the high-temperature stabilities of XLPE insulation and the additives
thereby offering valuable guidance for the formulation design of XLPE insulation for better performance.