DocumentCode
1458127
Title
Multishot performance of an insulator in a laboratory electromagnetic launcher
Author
Gee, Rachel Monfredo ; Persad, Chadee
Author_Institution
Inst. for Adv. Technol., Texas Univ., Austin, TX, USA
Volume
37
Issue
1
fYear
2001
fDate
1/1/2001 12:00:00 AM
Firstpage
257
Lastpage
262
Abstract
Insulator materials for electromagnetic launchers have been extensively evaluated for their performance under plasma armature conditions. Melting, erosion and ablation damage of polymers, glass-reinforced polymers and ceramics have necessitated regular replacement to maintain electrical isolation of rail conductors. A glass-fiber-reinforced polymer insulator from the G series was examined for its performance in a multishot electromagnetic launch (EML) environment employing a solid aluminum armature. Bore surveys were conducted between launches to monitor the condition of the insulator surfaces. Techniques to assess degradation by debris deposition, matrix ablation and gross delamination utilized an in situ optical bore scope and an internal bore gage that measured insulator-to-insulator dimensions in the medium caliber square bore. The widely used, glass-reinforced polymer insulator G10 was found to maintain its electrical integrity over multiple launches. The extent of degradation was found to be dependent upon the magnitude of the local energy dissipation and corresponding location within the gun bore. Measures to control damage through materials engineering can be developed from this knowledge base
Keywords
arcs (electric); electromagnetic launchers; glass fibre reinforced composites; insulator testing; polymer insulators; wear testing; G series; ablation damage; bore surveys; erosion; glass-fiber-reinforced polymer insulator; insulator materials; insulator multishot performance; insulator surface condition monitoring; laboratory electromagnetic launcher; melting; plasma armature conditions; solid aluminum armature; Boring; Ceramics; Conducting materials; Degradation; Electromagnetic launching; Laboratories; Plasma materials processing; Plastic insulation; Polymers; Rails;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/20.911833
Filename
911833
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