Study on insulation structure of fast slide in termination and joint for 15 kV power cable applying to live work on site

Teng Le-tian, Zhang Jinxiu, Luo Yan
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引用次数: 2

Abstract

Analysis and resolution of electric field distribution in fast slide-in termination and joint using finite element numeral analysis method described in this paper. Rules of interface compress stress, compress strain, and rubber material peristaltic change as well as material fatigue character after inserting and drawing 1000 times are discussed. The research results proved that electric field controlled cone design in insulation structure of the terminations and joints is important. The elasticity and permanence distortion of the EPR used as the main insulating material may be 50% and 2%. Inserting and drawing surplus tolerance of the termination and joint should not exceed 1.7
应用于现场带电作业的15kv电力电缆端接接头快滑块绝缘结构研究
本文用有限元数值分析方法对快速滑入端部和接头的电场分布进行了分析和求解。讨论了插拔1000次后界面压缩应力、压缩应变、橡胶材料蠕动变化及材料疲劳特性的变化规律。研究结果表明,电场控制锥体设计在端子和接头的绝缘结构中具有重要意义。作为主要绝缘材料的EPR的弹性和永久变形可达50%和2%。端接和接头的插拔余量不应超过1.7
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