DocumentCode
764975
Title
The preliminary feasibility of intercalated graphite railgun armatures
Author
Gaier, James R. ; Gooden, Clarence E. ; Yashan, Doreen ; Naud, Steve
Author_Institution
NASA Lewis Res. Center, Cleveland, OH, USA
Volume
27
Issue
1
fYear
1991
fDate
1/1/1991 12:00:00 AM
Firstpage
289
Lastpage
293
Abstract
Graphite intercalation compounds may provide an excellent material for the fabrication of electromagnetic railgun armatures. As a pulse of power is fed into the armature the intercalate could be excited into the plasma state around the edges of the armature, while the bulk of the current would be carried through the graphite block. Such an armature would have both diffuse plasma armatures and bulk conduction armatures. In addition, the highly anisotropic nature of these materials could enable the electrical and thermal conductivity to be tailored to meet the specific requirements of electromagnetic railgun armatures. Preliminary investigations have been performed in an attempt to determine the feasibility of using graphite intercalation compounds as railgun armatures. Issues of fabrication, resistivity, stability, and electrical current spreading have been addressed for the case of highly oriented pyrolytic graphite
Keywords
electromagnetic launchers; graphite intercalation compounds; plasma devices; pulsed power technology; EM launchers; anisotropy; bulk conduction armatures; electrical conductivity; electrical current spreading; fabrication; feasibility; intercalated graphite railgun armatures; plasma armatures; plasma state; pulsed power; resistivity; stability; thermal conductivity; Contacts; Electromagnetic launching; Fabrication; Laboratories; Plasma materials processing; Plasma properties; Railguns; Solids; Stability; Thermal conductivity;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/20.101042
Filename
101042
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