DocumentCode
1289434
Title
Effects of geometry and polarity on the prebreakdown and flashover behavior of conical high-voltage insulators in vacuum
Author
Xu, Ningsheng ; Latham, Rod ; Goddard, Brennan ; Tan, Jocelyn ; Taylor, Bill
Author_Institution
Aston Univ., Birmingham, UK
Volume
25
Issue
3
fYear
1997
fDate
6/1/1997 12:00:00 AM
Firstpage
447
Lastpage
454
Abstract
Concurrent optical and electrical measurements have been used to characterize the physical phenomena associated with the prebreakdown and flashover behavior of high-voltage alumina ceramic insulator samples having both conventional and unconventional conical geometries. The critical parameters are the threshold voltage for initiating flashover events, the stable interelectrode current-voltage relationship, the luminescence pattern, and the breakdown rate as a function of time. These measurements have revealed that a well-conditioned sample of unconventional conical geometry can have very low, i.e., approaching zero, breakdown rate. Physical explanations of the findings are based on the current understanding of flashover mechanisms and the prediction from simulations using a field plotting technique
Keywords
alumina; ceramic insulators; flashover; high-voltage techniques; luminescence; plasma diagnostics; Al2O3; alumina ceramic insulator; breakdown rate; conical geometries; conical high-voltage insulators; critical parameters; electrical measurements; field plotting technique; flashover behavior; flashover events; flashover mechanisms; luminescence pattern; optical measurements; physical phenomena; prebreakdown; simulations; stable interelectrode current-voltage relationship; threshold voltage; vacuum; well-conditioned sample; Breakdown voltage; Ceramics; Dielectrics and electrical insulation; Electric breakdown; Electric variables measurement; Flashover; Geometrical optics; Geometry; Luminescence; Threshold voltage;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/27.597259
Filename
597259
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