DocumentCode :
615599
Title :
Electric stress grading on bushings of combined instrument transformers using high permittivity polymeric composites
Author :
Paredes-Olguin, M. ; Gomez-Yanez, C. ; Espino-Cortes, F.P. ; Ramirez, E.
Author_Institution :
SEPI-ESIQIE-Zacatenco, Inst. Politec. Nac., Mexico City, Mexico
fYear :
2013
fDate :
2-5 June 2013
Firstpage :
299
Lastpage :
303
Abstract :
The use of polymeric bushings for high voltage equipment has been increasing mainly due to some advantages over ceramic bushings. Some of these advantages are: reduced weight, better performance under polluted conditions and seismic activity and reduced hazard due to explosion. In polymeric, as well as in ceramic bushings, the electric field on the surface of the insulating housing must be controlled in order to avoid the presence of surface discharges on the vicinity of the metal flanges. In instrument transformers, one of the most used techniques to control the electric stress on the surface of the housing is by using a capacitive grading system. In this technique, conductive foils are used between paper layers to produce the capacitive stress control. In this work is discussed how high permittivity composites prepared with functionalized barium titanate powder can be used to control the electric stress on the surface of the bushing without the need of conductive foils inside the main insulation. This option is analyzed in a special design of bushing used in combined instrument transformers with two central conductors, one at high voltage and the other at ground potential, each of them with its own capacitive grading foils. By using three dimensional finite element simulations, the performance of the high permittivity composite bushing is compared with the stress grading obtained in a bushing with capacitive grading. According to the results, by using a composite material of increased permittivity, the electric stress on the surface of the bushing can be reduced to acceptable values without need of conductive foils.
Keywords :
bushings; composite materials; electronics packaging; foils; instrument transformers; insulation; permittivity; polymers; powders; surface discharges; capacitive grading foil; capacitive grading system; capacitive stress control; ceramic bushing; composite material; conductive foil; conductor; electric field; electric stress grading; explosion; functionalized barium titanate powder; ground potential; high permittivity composite bushing; high permittivity polymeric composite; high voltage equipment; instrument transformer; insulating housing; metal flanges; paper layer; polluted condition; polymeric bushing; reduced hazard; seismic activity; surface discharge; three dimensional finite element simulation; Ceramics; Electric fields; High K dielectric materials; Insulators; Polymers; combined instrument transformer; electric field; high k; polymeric bushing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical Insulation Conference (EIC), 2013 IEEE
Conference_Location :
Ottawa, ON
Print_ISBN :
978-1-4673-4738-9
Electronic_ISBN :
978-1-4673-4739-6
Type :
conf
DOI :
10.1109/EIC.2013.6554254
Filename :
6554254
Link To Document :
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