DocumentCode :
63854
Title :
Silicone rubber insulators for polluted environments part 1: enhanced artificial pollution tests
Author :
Charalampidis, Pavlos ; Albano, M. ; Griffiths, Hugh ; Haddad, Ali ; Waters, R.T.
Author_Institution :
Sch. of Eng., Cardiff Univ., Cardiff, UK
Volume :
21
Issue :
2
fYear :
2014
fDate :
Apr-14
Firstpage :
740
Lastpage :
748
Abstract :
The development of polymeric materials for outdoor insulation has been much aided by existing standard laboratory tests such as inclined-plane procedures. The position is less satisfactory in respect of the optimization of insulator profiles and the choice of the minimum unified specific creepage distance (USCD) for a given site pollution severity (SPS). Standard tests currently under revision are stated to be ´not directly applicable to polymeric insulators´. Such tests are, therefore, urgently needed to discriminate the pollution performance of silicone-rubber insulators of different housing materials and profiles, to quantify the inverse relationship of pollution severity and flashover voltage and to assess the influence of wetting rate. A suitable test strategy would also avoid housing damage from excessive flashovers. A new test procedure is presented here to achieve these objectives. This is not confined to flashover voltage measurements. A high-resolution data acquisition system is used to monitor and store the waveforms of the applied test voltage and leakage current throughout tests on 11kV silicone-rubber insulators. This enhancement provides a further basis for the quantitative comparison of insulators in artificial pollution testing, because the results corroborate the inverse relationship between flashover voltage and pre-flashover leakage current. Part 2 demonstrates the pollution performance of 11kV silicone-rubber insulators when surface texturing is used to increase USCD values.
Keywords :
data acquisition; flashover; leakage currents; optimisation; silicone rubber insulators; voltage measurement; SPS; USCD; artificial pollution testing; flashover voltage measurements; high-resolution data acquisition system; insulator profiles optimization; polymeric insulators; polymeric materials; preflashover leakage current; silicone rubber insulators; silicone-rubber insulators; site pollution severity; surface texturing; unified specific creepage distance; Data acquisition; Flashover; Insulators; Materials; Pollution; Pollution measurement; Voltage measurement; Outdoor insulation; dry-banding; flashover; high voltage; insulation contamination; insulator testing; pollution; silicone rubber insulation;
fLanguage :
English
Journal_Title :
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher :
ieee
ISSN :
1070-9878
Type :
jour
DOI :
10.1109/TDEI.2013.004015
Filename :
6783068
Link To Document :
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