DocumentCode
1461426
Title
Preliminary experimental results of a novel induction type railgun
Author
Yamori, Akira ; Kohno, Migiwa ; Kawashima, Nobuki
Author_Institution
Inst. of Space & Astronaut. Sci., Kanagawa, Japan
Volume
35
Issue
1
fYear
1999
fDate
1/1/1999 12:00:00 AM
Firstpage
447
Lastpage
451
Abstract
This paper describes the concept of an induction type railgun and the results of preliminary experiments with such a railgun. The induction type railgun may surmount the barrier which has been created by secondary arcs in the operations of plasma armature railguns. The induction type railgun is operated as a conventional railgun during the early stage of acceleration and is designed to accelerate a projectile by the plasma armature which is enhanced by the induction from a set of external current loops during the late stage. The external current loops are configured just outside of the two rails at the middle segment of the railgun bore, and are shorter than the railgun. The induced voltage generated by the external current loops is applied to the circuit consisting of the plasma armature, the secondary arc and the two rails between the two arcs. The induced voltage increases the plasma armature current, and simultaneously reduces the secondary arc current. The authors have performed preliminary experiments of the induction type railgun with a relatively low energy stored in a capacitor bank. An increase in the plasma armature current and projectile velocity have been observed in their preliminary experiments
Keywords
capacitor storage; circuit-breaking arcs; electromagnetic induction; plasma devices; power capacitors; railguns; capacitor bank energy storage; external current loops; induced voltage; induction-type railgun; plasma armature current; plasma armature railguns; projectile acceleration; projectile velocity; rails; secondary arcs; Acceleration; Boring; Capacitors; Circuits; Induction generators; Plasma accelerators; Projectiles; Railguns; Rails; Voltage;
fLanguage
English
Journal_Title
Magnetics, IEEE Transactions on
Publisher
ieee
ISSN
0018-9464
Type
jour
DOI
10.1109/20.738449
Filename
738449
Link To Document