DocumentCode :
32551
Title :
Vacuum Surface Flashover of High Gradient Insulators Under Nanosecond Pulse
Author :
Jun Zhu ; Sifu Chen ; Liansheng Xia ; Xiaoguo Jiang ; Lu Lyu ; Yuan Wang ; Yi Shen ; Erxiang Liu ; Jialong He ; Jinshui Shi ; Linwen Zhang ; Jianjun Deng
Author_Institution :
Accel. Phys. & Applic. Lab., Inst. of Fluid Phys., Mianyang, China
Volume :
42
Issue :
2
fYear :
2014
fDate :
Feb. 2014
Firstpage :
330
Lastpage :
335
Abstract :
Vacuum surface flashover of the high gradient insulator (HGI), which consists of many alternative layers of conductors and insulators, was found to generally start from one or several dielectric layers adjacent to the anode under nanosecond pulse by using the fast photography. A simple model is proposed to explain the experimental observations. The secondary electron emission avalanche (SEEA) along the dielectric surface adjacent to the anode will be greatly enhanced due to the upstream SEEA starting from the traditional and the intermediate cathode triple junctions. The 15-mm-thick HGI samples with different numbers of dielectric layers were tested and the samples with six and eight dielectric layers showed the best performance. The experimental result proves that as the number of dielectric layers reaches a certain level, the performance of the HGI will decrease as the number of dielectric layers increases.
Keywords :
cathodes; conductors (electric); flashover; secondary electron emission; vacuum insulation; HGI; SEEA; conductors; dielectric layers; dielectric surface; high gradient insulators; intermediate cathode; nanosecond pulse; photography; secondary electron emission avalanche; size 15 mm; triple junctions; vacuum surface flashover; Anodes; Dielectrics; Discharges (electric); Insulators; Junctions; Metals; Surface discharges; Fast photography; high gradient insulator (HGI); insulator; nanosecond pulse; surface flashover; vacuum;
fLanguage :
English
Journal_Title :
Plasma Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-3813
Type :
jour
DOI :
10.1109/TPS.2013.2294688
Filename :
6689306
Link To Document :
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