DocumentCode
783940
Title
Effect of Dielectric Materoals on Surface Breakdown in Vacuum and Analysis by Electron Trajectory Simulation
Author
Takahashi, H. ; Shioiri, T. ; Matsumoto, K.
Author_Institution
Toshiba Corporation, Kawasaki, Japan
Issue
4
fYear
1985
Firstpage
769
Lastpage
774
Abstract
To study and analyze the effect of surface insulation in case of a solid insulator used in actual vacuum interrupters, prebreakdown currents, breakdown voltages and Vb-t characteristics were measured with two different dielectric materials (glass and ceramics). It has been found that the breakdown voltage with a solid insulator is lower than without it, and that this fact is closely associated with prebreakdown current. In other words, glass provides a higher surface breakdown strength than ceramics because the prebreakdown current of glass is lower than that of ceramics. Electron trajectory analysis has revealed that the above-mentioned phenomenon is caused by the presence of a critical field strength of 8.9 kV/mm at one or more points on the electrode and a prebreakdown current of the order of 10-11 A. Although the prebreakdown current for the critical field strength of 8.7 kV/mm remains too low to cause electrical breakdown, it can be predicted that the level readily increases by some million times, reaching the order of 10-4 A at the time of a breakdown. This is the result of the contribution of secondary electron avalanches on the surface of the-solid insulator.
Keywords
Analytical models; Ceramics; Dielectric breakdown; Dielectrics and electrical insulation; Electric breakdown; Electrons; Glass; Interrupters; Solids; Vacuum breakdown;
fLanguage
English
Journal_Title
Electrical Insulation, IEEE Transactions on
Publisher
ieee
ISSN
0018-9367
Type
jour
DOI
10.1109/TEI.1985.348907
Filename
4156865
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