Developed of High Voltage Bushing with New Shielding Technology for High Voltage Switch Cabinet

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Abstract:

TGZ10A-40.5 wall bushing of high voltage switch cabinet from one company was taken as applied research object. Reference the development process of high voltage cable shielding technology, three samples were designed and produced depending on different sets of the shield system. The result show that: surfaces processed by the way that the inner (aluminum cylinder) and the outer (metal mesh ring) shielding components were coated with a semi-conductive material, made little sense to improve the withstand voltage level and reduce the partial discharge; surface processed by the way that inner shield component (aluminum cylinder) was coated with semi-conductive material, the outer shield component (metal mesh ring) was not coated with semi-conductive material, was obviously influenced the improvement of the withstand voltage level and reduction of the partial discharge, compared with traditional technology, the average start voltage of corona increased 23.8%, the average value of partial discharge dropped 27.7%.

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247-251

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March 2015

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© 2015 Trans Tech Publications Ltd. All Rights Reserved

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[1] D.X. Zhang, L.Z. Yao, W.Y. Ma. Development strategies of smart grid in China and abroad[J]. Proceedings of the CSEE, 2013, 33(31): 1-14(in Chinese).

Google Scholar

[2] M.J. Wang.Smart grid and smart energy resource grid[J].Power System Technology,2010,34(10): 1-5(in Chinese).

Google Scholar

[3] X.B. Feng. Discussion on intelligent substation [J]. High Voltage Apparatus, 2013, 49(2): 116-119 (in Chinese).

Google Scholar

[4] N.N. Song, N. Tong, X.J. Yan, et al. Discussion on Some Problems of Smart Grid[J]. Jiangsu Electrical Engineering, 2010(03): 82-84(in Chinese).

Google Scholar

[5] R. Jia. Insulation design and performance analyses of the high voltage bushing[D]. A dissertation submitted to Shenyang University of Technology for the master degree, 2011 (in Chinese).

Google Scholar

[6] G.H. Pan, H.Y. Zhu. Key technologies research for the installation and field test of ±800 kV wall bushing [J]. High Voltage Apparatus, 2013, 49(2): 98-102 (in Chinese).

Google Scholar

[7] W.F. Wang, Q.J. Zhang, L.Q. Jiang. Analysis on electric field of wall bushing for 40. 5 kV switch cabinet and optimized design[J]. Huadian Technology, 2011, 33(2): 20-23(in Chinese).

Google Scholar

[8] Y.F. Xue. Electric field calculation and insulation analysis of high voltage insulating bushing[J]. Popular Science & Technology, 2014, 16(2): 52-55(in Chinese).

Google Scholar

[9] H.T. Song. Rersearch on preparation and properties of high performance insulating polyethylene nanocomposites and semi-conductive shield polyethylene nanocomposites[D]. A dissertation submitted to Beijing University of Chemical Technology for the Ph D, 2011(in Chinese).

Google Scholar

[10] Y. Yin, Q.H. Wang, Y.Q. Wang, et al. Semi-conductive shielding material for bushing and its preparation method[P]. China Patent, CN101585943A, 2009-11-25.

Google Scholar