Title :
Mold growth on nonceramic insulators and its impact on electrical performance
Author :
Gorur, R.S. ; Montesinos, J. ; Roberson, R. ; Burnham, J. ; Hill, R.
Author_Institution :
Arizona State Univ., Tempe, AZ, USA
fDate :
4/1/2003 12:00:00 AM
Abstract :
This paper describes the identification of a common mold (i.e., fungus) growing on nonceramic insulators (NCIs) in service, and analyzes its impact on the electrical performance. The insulators evaluated were line posts removed from a 138-kV transmission line serving the interior (away from the coast) regions in Florida. The insulators had housings made from different types of silicone rubber (SR) and ethylene propylene rubber (EPR) polymer families. Electrical tests performed include surface resistance measurements and determination of contamination withstand capability (CWC) using the clean-fog procedure. Changes in the CWC were correlated to material changes by using micro-Fourier transform infrared (FTIR) analysis and surface resistance measurements. It was concluded that the mold growth is dependent on material formulation and outdoor environment. On SR insulators that exhibited mold growth, there was a reduction in the CWC when compared to the same insulator without the mold; however, even the reduced level of CWC was superior to that obtained on similarly rated EPR and porcelain insulators without any visible mold growth. Lastly, simple methods to remove the mold from the insulators are listed.
Keywords :
Fourier transform spectroscopy; electric resistance measurement; ethylene-propylene rubber; flashover; infrared spectroscopy; insulator testing; polymer insulators; silicone rubber insulators; 138 kV; FTIR analysis; Florida; clean fog flashover tests; clean-fog procedure; electrical performance; electrical tests; ethylene propylene rubber housings; fungus; hydrophobicity; line posts; material formulation; micro-Fourier transform infrared analysis; mold growth; nonceramic insulators; outdoor environment; silicone rubber housings; surface resistance; surface resistance measurements; Dielectrics and electrical insulation; Electrical resistance measurement; Fungi; Paramagnetic resonance; Performance analysis; Plastic insulation; Rubber; Strontium; Surface contamination; Surface resistance;
Journal_Title :
Power Delivery, IEEE Transactions on
DOI :
10.1109/TPWRD.2003.809681