Experimental Study on Mechanical Properties of Ultra High Voltage Composite Post Insulators

Yue ZHANG, Qiang XIE, Chang HE, Ran ZHUO, Bing LUO, Yuxin LU, Rong HU, Bangxin SUN

South Power Sys Technol ›› 2017, Vol. 11 ›› Issue (11) : 27-33.

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South Power Sys Technol ›› 2017, Vol. 11 ›› Issue (11) : 27-33. DOI: 10.13648/j.cnki.issn1674-0629.2017.11.005
Original article

Experimental Study on Mechanical Properties of Ultra High Voltage Composite Post Insulators

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Abstract

In order to study the mechanical properties of UHV solid composite post insulators, static lateral push test and dynamic property test are carried out. The strain at the bottom of composite post insulators, the force-displacement relationship, and fundamental frequencies before and after the failure are obtained by arranging strain gauges at the bottom of the post insulators, displacement transduces and accelerometers on the top of post insulators, respectively. It’s observed that the fractures on the metal flanges and the bond failure between the post insulator bar and the flange are the most common failure modes, and the fundamental frequency of the post insulators decreased significantly after its failure. The force-displacement relationship of the post insulator under lateral force can be divided into linear elasticity stage and elastic-plasticity stage. Except for the other parameters, the lateral load bearing capacity of the post insulators mainly depends on the height of flanges. Due to the higher bonding region and the better bonding effect, the insulator with a lager flange height will have a greater lateral load bearing capacity when other parameters of the post insulator bar are the same. For composite post insulator without reinforcement rib on the flange, the lateral bearing capacity of its components is different, and the bearing capacity of post insulator bar is higher than that of the flange and the bonding material.

Key words

composite post insulator / mechanical property / lateral push test / lateral stiffness / lateral load bearing capacity

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Yue ZHANG , Qiang XIE , Chang HE , et al . Experimental Study on Mechanical Properties of Ultra High Voltage Composite Post Insulators[J]. Southern Power System Technology. 2017, 11(11): 27-33 https://doi.org/10.13648/j.cnki.issn1674-0629.2017.11.005

References

[1]
SHINOZUKA M, CHENG T C, FENG M Q, et al. Seismic performance analysis of electric power systems[R]. Buffalo: MCEER, 1999.
[2]
BREISGAU, FREIBURG I. The great Hanshin earthquake[M]. Switzerland: Swiss Reinsurance Company, 1995.
[3]
吴光亚, 姚忠森, 何宏明, 等. 高压支柱瓷绝缘子运行事故分析[J]. 电磁避雷器, 2002, 28(10): 57-58.
WU Guangya, YAO Zhongsen, HE Hongming, et al. Failure analyses for high voltage post insulators of ceramic material[J]. Insulators and Surge Arresters, 2002, 28(10): 57-58.
[4]
SCHIFF A J. Guide to improved earthquake performance of electrical power systems[R]. Washington DC: National Institute for Standards and Testing, 1998.
[5]
谢强. 电力系统的地震灾害研究现状与应急响应[J]. 电力建设, 2008, 29(8): 1-6.
XIE Qiang. State-of-the-art of seismic disaster research and emergency response of electric power system[J]. Electric Power Construction, 2008, 29(8): 1-6.
[6]
于永清, 李光范, 李鹏, 等. 四川电网汶川地震电力设施受灾调研分析[J]. 电网技术, 2008, 32(11): 5-10.
YU Yongqing, LI Guangfan, LI Peng, et al. Investigation and analysis of electric equipment damage in Sichuan Power Grid caused by Wenchuan earthquake[J]. Power System Technology, 2008, 32(11): 5-10.
[7]
李西育, 党镇平. 特高压支柱瓷绝缘子弯曲强度可靠性分析[J]. 电瓷避雷器, 2013(2): 17-23.
LI Xiyu, DANG Zhenping. Bending strength reliability analysis of the post porcelain insulator for UHV[J]. Insulators and Surge Arresters, 2013 (2): 17-23.
[8]
刘朝丰, 李西育, 王卫国, 等. 1 100 kV瓷套型避雷器机械应力仿真分析[J]. 电瓷避雷器, 2015(1): 148-154.
LIU Chaofeng, LI Xiyu, WANG Weiguo, et al. Mechanical stresses simulation of 1 100 kV porcelain housed surge arresters[J]. Insulators and Surge Arresters, 2015(1): 148-154.
[9]
郭浩. 我国复合绝缘子的应用及运行中的若干问题[J]. 电力设备, 2006, 7(4): 43-45.
GUO Hao. Some problems in application and operation of composite insulator in China[J]. Electrical Equipment, 2006, 7(4): 43-45.
[10]
刘泽洪. 复合绝缘子使用现状及其在特高压输电线路中的应用前景[J]. 电网技术, 2006, 30(12): 1-7.
LIU Zehong. Present situation and prospects of applying composite insulators to UHF transmission lines in China[J]. Power System Technology, 2006, 30(12): 1-7.
[11]
KLINGBEIL L, BAUCH U. Surge arresters in composite housings-new developments and long term experiences [C]// IEEE PES Transmission and Distribution Conference and Exposition, April 21-24, 2008, Chicago, IL, USA. New York: IEEE, 2008.
[12]
REINHORN A M, CIMELLARO G P, ROH H, et al. Seismic qualification testing of electrical hollow composite post insulators[R]// Bonneville Power Authority. Structural engineering and earthquake simulation laboratory report. Buffalo: the University of Buffalo, 2009.
[13]
CIMELLARO G P, REINHORN A M, SCHIFF A. Evaluation of hollow core composite insulators[C]// Technical Council on Lifeline Earthquake Engineering Conference, June 28-July 1, 2009, Oakland, California, USA. New York: IEEE, 2009: 209-220.
[14]
秦亮, 卓然, 谢强, 等. 考虑金具滑移的±800 kV特高压管母耦联直流复合支柱绝缘子的抗震性能[J]. 南方电网技术, 2016, 10(11): 16-23.
QIN Liang, ZHUO Ran, XIE Qiang, et al. Seismic performance of composite post insulators interconnected by rigid bus at ±800 kV UHVDC considering the slippage of fittings[J]. Southern Power System Technology, 2016, 10(11): 16-23.

Funding

Fok Ying Tung Education Foundation for Young Scientists(114021)
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