DocumentCode
27187
Title
The resistivity of oil and oil-impregnated pressboard varies with temperature and electric field strength
Author
Li, Huaqing ; Zhong, Li-Rong ; Yu, Qian ; Mori, Shinsuke ; Yamada, Shigeru
Author_Institution
State Key Laboratory of Electrical Insulation and Power Equipment, Xi´an Jiaotong University, Xi´an, 710049, China
Volume
21
Issue
4
fYear
2014
fDate
Aug-14
Firstpage
1851
Lastpage
1856
Abstract
The mineral insulating oil and pressboard are important insulation dielectrics in AC-DC converter transformers. Thus, it is very significant to understand the dielectric properties of the oil and oil-impregnated pressboard. In this paper, the influences of the temperature, field strength and aging on the resistivity of oil and oil-impregnated pressboard have been investigated. Samples used in the experiments are new oil, aged oil, pressboard immersed in new oil and aged oil respectively. The measuring device of resistivity was full of oil and isolated from outside. All samples were measured at temperature range of 25-80 °C under the electric field strength range of 2-10 kV/mm for oil and 3-30 kV/mm for oil-impregnated pressboard. The results showed that the resistivity of oil-impregnated pressboard decreased along with the increase of field strength and temperature. For all oil specimens and pressboard immersed in aged oil, the resistivity decreasing rate ( σ lgρ / σE ) along with electric field strength showed a downtrend with the increase of temperature; while, for pressboard immersed in new oil, the decreasing rate showed an uptrend with the increase of temperature. For oil, the resistivity reduction rate with aging (r) decreased along with the increase of field strength and temperature. For pressboard immersed in oil, the reduction rate with aging (r) showed an uptrend with the increase of temperature.
Keywords
Aging; Conductivity; Electric fields; Impurities; Ions; Temperature; Temperature measurement; Resistivity; mineral insulation oil; oil-impregnated pressboard; transformer.;
fLanguage
English
Journal_Title
Dielectrics and Electrical Insulation, IEEE Transactions on
Publisher
ieee
ISSN
1070-9878
Type
jour
DOI
10.1109/TDEI.2014.004332
Filename
6878015
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