• DocumentCode
    1587624
  • Title

    Surface flashover characteristics of solid CL-polystyrene and related materials

  • Author

    Elizondo, J.M. ; Dragt, A.J. ; Krogh, M. ; Stygar, B. ; Struve, K. ; Spielman, R. ; Prestwich, K.R.

  • Author_Institution
    Honeywell FM&T/NM, Albuquerque, NM, USA
  • Volume
    2
  • fYear
    2001
  • Firstpage
    1810
  • Abstract
    Insulator vacuum surface flashover continues to be a limiting factor in high voltage, high-energy vacuum-to-oil interfaces. CL-Polystyrene is being used in several applications due to its better flashover voltage hold-off. Insulator stacks, built following Martin´s criteria, require that the material constant be known as well as the proper time scaling. We have performed a series of vacuum flashover experiments with a sufficient number of CL-Polystyrene samples to determine the material constant required for the JCM 45/spl deg/ empirical equation. It appears that most low voltage flashover events (due to possible conditioning) occur late in time (t/sub eff/ @ 63% or later), and most non-recoverable flashover events occur during the rise time (t/sub eff/ @ 89% or earlier). Testing was performed with a Marx Generator producing up to 400 kV peak voltage with a rise-time of 80 to 90 ns and a typical RC decay of 3 /spl mu/sec. Unrecoverable sample flashover was determined by three flashover events in a row. Scaling the JCM constant with t/sub eff/ @ 89%, and considering only the last three flashover events per sample, an average value of 235 is obtained for Polystyrene. When all the flashover events are considered in the scaling, an average constant value of 210 is then obtained. We have also performed testing on a similar number of samples of Perspex and Acrylic. Experimentally determined Weibull distributions are presented for the three materials.
  • Keywords
    Weibull distribution; flashover; high-voltage techniques; polymers; pulse generators; pulsed power supplies; surface discharges; 400 kV; Marx generator; Weibull distributions; acrylic; empirical equation; high voltage high-energy vacuum-to-oil interfaces; insulator vacuum surface flashover; perspex; related materials; solid CL-polystyrene; time scaling; Electrodes; Equations; Flashover; Insulation; Laboratories; Low voltage; Performance evaluation; Solids; Testing; Weibull distribution;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Pulsed Power Plasma Science, 2001. PPPS-2001. Digest of Technical Papers
  • Conference_Location
    Las Vegas, NV, USA
  • Print_ISBN
    0-7803-7120-8
  • Type

    conf

  • DOI
    10.1109/PPPS.2001.1001925
  • Filename
    1001925