DocumentCode
1189720
Title
AC clean fog tests on nonceramic insulating materials and a comparison with porcelain
Author
de la O, A. ; Gorur, R.S. ; Chang, J.
Author_Institution
Dept. of Electr. Eng., Arizona State Univ., Tempe, AZ, USA
Volume
9
Issue
4
fYear
1994
fDate
10/1/1994 12:00:00 AM
Firstpage
2000
Lastpage
2008
Abstract
AC clean fog tests were performed on nonceramic materials used for outdoor high voltage insulators, namely, room and high temperature vulcanizing (RTV and HTV) silicone rubber, and ethylene propylene rubber (EPR), with porcelain used as the reference. The steam input rate was varied upwards from the value standardized for porcelain insulators. Results indicate that higher steam input rates produce a significant reduction in the flashover voltage of silicone rubber family materials, although it is always higher than that obtained for EPR and porcelain. For EPR, the reduction is less and is similar to that established for porcelain. The mechanisms involved have been examined. The trend in the results is found to be consistent for different formulations and insulator geometries of the generic polymer (e.g. silicone rubber, EPR) evaluated. A new, simple method for consistently applying uniform contamination on silicone rubber (both RTV and HTV) is described, without the use of extensive physical or chemical treatments, or prior conditioning by dry band arcing
Keywords
ethylene-propylene rubber; flashover; insulator testing; porcelain insulators; silicone insulation; silicone rubber; silicone rubber insulators; steam; AC clean fog tests; EPR; dry band arcing; ethylene propylene rubber; flashover voltage reduction; high temperature vulcanizing silicone rubber; insulator geometries; nonceramic insulating materials; porcelain; room temperature vulcanizing silicone rubber; steam input rate; Flashover; Insulation; Insulator testing; Materials testing; Paramagnetic resonance; Performance evaluation; Porcelain; Rubber; Temperature; Voltage;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/61.329532
Filename
329532
Link To Document