DocumentCode :
1591680
Title :
Transformer-Type Seeding System of a Helical FCG Based on a Transverse Shock Wave Ferromagnetic Generator
Author :
Shkuratov, S.I. ; Talantsev, Evgueni F. ; Baird, Jason ; Altgilbers, Larry L. ; Stults, Allen H.
Author_Institution :
Loki Inc., Rolla, MO
fYear :
2006
Firstpage :
313
Lastpage :
318
Abstract :
A new application of the effect of transverse-shock-wave demagnetization of Nd2Fe14B high-energy hard ferromagnets for powering an explosive-driven helical flux compression generator (FCG) is proposed. The novel FCG seeding system based on a compact transverse shock-wave ferromagnetic generator (FMG) containing a 200-cm3 Nd2Fe14B energy-carrying element and a 12 g high explosive charge was designed, constructed, and tested. The proposed design is based on the idea that the wide coaxial single-turn pulse-generating coil of the FMG can simultaneously serve as a seed coil for the FCG. The coaxial single-turn pulse-generating coil of the FMG was wound on the initial part of the FCG helix; therefore, only transformer coupling existed between the pulse-generating system of the FMG and the helix of the FCG. This seeding system provides up to 180 A current amplitude and 55 mus current pulse duration to a helical FCG.
Keywords :
ferromagnetic materials; pulse generators; shock waves; transformers; coaxial single-turn pulse-generating coil; compact transverse shock-wave ferromagnetic generator; current pulse duration; explosive-driven helical flux compression generator; helical FCG; high-energy hard ferromagnets; transformer-type seeding system; Coaxial components; Coils; Demagnetization; Explosives; Iron; Neodymium; Power generation; Pulse transformers; Shock waves; System testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Megagauss magnetic field generation and related topics, 2006 ieee international conference on
Conference_Location :
Herlany
Print_ISBN :
978-1-4244-2061-2
Electronic_ISBN :
978-1-4244-2062-9
Type :
conf
DOI :
10.1109/MEGAGUSS.2006.4530694
Filename :
4530694
Link To Document :
بازگشت