• DocumentCode
    790012
  • Title

    Completely Explosive Autonomous High-Voltage Pulsed-Power System Based on Shockwave Ferromagnetic Primary Power Source and Spiral Vector Inversion Generator

  • Author

    Shkuratov, Sergey I. ; Talantsev, Evgueni F. ; Baird, Jason ; Rose, Millard F. ; Shotts, Zachary ; Roberts, Zack ; Altgilbers, Larry L. ; Stults, Allen H.

  • Author_Institution
    Loki Inc., Rolla, MO
  • Volume
    34
  • Issue
    5
  • fYear
    2006
  • Firstpage
    1866
  • Lastpage
    1872
  • Abstract
    Novel explosive and conventional pulsed-power technologies were combined, and a series of explosive-driven high-voltage power supplies was designed, built, and tested. The power supply contained an explosive-driven high-voltage primary power source based on the fundamental physical effect of shockwave demagnetization of Nd2 Fe14B high-energy ferromagnet and a power-conditioning stage. The volume of the energy-carrying ferromagnetic elements in the shockwave ferromagnetic generators (FMGs) was 8.75 cm3. The power-conditioning stage was based on the spiral vector inversion generator (VIG). The combined FMG-VIG system demonstrated successful operation and good performance. The output-voltage pulse amplitude of the combined FMG-VIG system exceeded 40 kV, with a rise time of 6.2 ns. The methodology was developed for digital simulation of the operation of completely explosive FMG-VIG system. Experimental results obtained are in a good agreement with the results of digital calculations performed
  • Keywords
    boron alloys; ferromagnetic materials; iron alloys; neodymium alloys; permanent magnets; pulsed power supplies; shock waves; Nd2Fe14B; explosive-driven high-voltage power supply; high-energy ferromagnet; high-voltage pulsed-power system; power conditioning stage; shockwave demagnetization; shockwave ferromagnetic power source; spiral vector inversion generator; Demagnetization; Explosives; Iron; Neodymium; Power generation; Power supplies; Pulse generation; Pulsed power supplies; Spirals; Testing; Direct energy conversion; explosive pulsed power; hard ferromagnets; shockwave demagnetization;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/TPS.2006.883347
  • Filename
    1710052