电气工程学报 ›› 2021, Vol. 16 ›› Issue (1): 149-156.doi: 10.11985/2021.01.019

• 高电压与绝缘技术 • 上一篇    下一篇

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导线滑移导致的NXJ型耐张线夹失效原因分析及结构性优化 *

王云辉(), 颜涛(), 李学(), 陈勇()   

  1. 云南电网有限责任公司基建部 昆明 650000
  • 收稿日期:2020-09-09 修回日期:2021-02-20 出版日期:2021-03-25 发布日期:2021-03-25
  • 作者简介:王云辉,男,1971年生。主要研究方向为电网工程技术研究及管理。E-mail:2860015761@qq.com
    颜涛,男,1969年生,硕士。主要研究方向为电网工程建设。E-mail:yt9825@126.com
    李学,男,1977年生。主要研究方向为电网工程标准化建设、智能电网、配电自动化、配网标准设计、配网工程三维设计及评审等。E-mail:1649202702@qq.com
    陈勇,男,1969年生,硕士。主要研究方向为电网工程技术研究及管理。E-mail:1033687453@qq.com
  • 基金资助:
    * 云南电网公司科技资助项目(YNKJXM20190227)

Analysis of Failure Caused by Wire Slippage and Structural Optimization of NXJ-type Strain Clamp

WANG Yunhui(), YAN Tao(), LI Xue(), CHEN Yong()   

  1. Infrastructure Department of Yunnan Power Grid Company Limited, Kunming 650000
  • Received:2020-09-09 Revised:2021-02-20 Online:2021-03-25 Published:2021-03-25

摘要:

NXJ型耐张线夹在配电网架空线路中应用颇广,但随着使用年限增长,线夹握力下降、绝缘导线松动滑移等问题严重影响配电系统的安全性,这可能导致严重的后果。针对NXJ-185型耐张线夹,利用有限元软件建立三维模型并进行静力学仿真,模拟该型线夹在实际使用中的应力分布情况。仿真结果表明,线夹楔块弧槽侧应力的过于集中是导致NXJ型耐张线夹失效的重要原因。在此基础上提出优化方案,利用有限元软件仿真发现,优化方案能有效解决应力过于集中的问题。

关键词: NXJ型耐张线夹, 有限元仿真, 静力学, 失效原因, 结构性优化

Abstract:

NXJ-type strain clamps are widely used in overhead lines of distribution networks, but with the increase of service life, the decline of wire grip force, loosening and slippage of insulated wire and other problems seriously affect the safety of distribution system, which may lead to serious consequences. Aiming at the NXJ-185-type strain clamp, the three-dimensional model is established by using the finite element software to simulate the stress distribution of the clamp in actual use in the static simulation, the failure causes are analysed, and the structural optimization scheme is put forward. The simulation results show that the non-uniform stress on the groove side of clamp wedge is the main reason for the failure of the NXJ-type strain clamp. On this basis, the optimization scheme is put forward, and the finite element software simulation development shows that the optimization scheme can effectively solve the problem of excessive stress concentration.

Key words: NXJ-type strain clamp, finite element simulation, statics, reason for failure, structural optimization

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