Research and simulation analysis of crack failure mechanism of conductor spacer bar in ±800 kV converter station

Author:

Zhou Yanke,Teng Yulin,Zhou Yanwen,Zhang Zhaoyu,Sun Hebin,Zhao Chaoyou

Abstract

Abstract The cracking of the conductor spacer bar in a ±800 kV converter station was detected and simulated to study the cause of failure. By means of penetration detection, fracture macroscopic inspection and metallographic inspection, it can be found that there are some casting defects such as segregation, pinhole and intergranular micro-crack in the chuck microstructure of the spacer bar, and the fatigue fracture occurs under the action of alternating stress. Through the structural simulation analysis, it can be concluded that the spacer rod body and the joint of the chuck have a structural mutation, which causes stress concentration and leads to the fracture of the spacer rod. Finally, suggestions are put forward to improve the design, manufacture and installation process of spacer rods to prevent similar failures from happening again and ensure the safe operation of the power grid.

Publisher

IOP Publishing

Reference10 articles.

1. A new type of damping interval bar and damping effect of transmission line;Liu;J. Chinese Journal of Electrical Engineering,2023

2. Study on inter-phase spacrods of three-phase wire;Yan;J. Vibration and Impact,2016

3. Analysis of problems with anti-dancing spacers in transmission lines;Jiang;J. Northeast Electric Power Technology,2015

4. Research on compact transmission line;Zhan;J. Journal of Beijing University of Technology,2018

5. Buckling of interphase spacers during vibration following ice shedding;Moawad;J. Cold Regions Science and Technology,2023

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