• DocumentCode
    2151427
  • Title

    Gas evolving materials for improved low current interruption in high voltage current limiting fuses

  • Author

    Shea, J.J. ; Crooks, W.R. ; Smith, J.D.B.

  • Author_Institution
    Technol. & Quality Center, Westinghouse Electr. Corp., Pittsburgh, PA, USA
  • fYear
    1994
  • fDate
    10-15 Apr 1994
  • Firstpage
    27
  • Lastpage
    34
  • Abstract
    Various organic and inorganic compounds have been identified to be very effective arc interrupters when applied to the silver elements of high power current limiting fuses (typical ratings for a single barrel range from 5.5-15.5 kV, 20-250 amps). These compounds reduced the noninterruption band which occurs between the rated fuse current and the minimum interruption current. The lower current limit at which the fuse can interrupt is directly affected by the gases evolved during arcing. These new compounds generate gases and free radicals which assist in deionizing the arc by a combination of the gas species evolved, increased local pressure, and by not forming any carbon residues. These novel compounds and binders significantly improved the interruption capability of high power fuses at low current levels. Compounds, test methods, evaluation, actual short circuit tests in a high power lab, and theoretical analysis are described
  • Keywords
    circuit-breaking arcs; free radicals; overcurrent protection; switchgear testing; 20 to 250 A; 5.5 to 15.5 kV; Ag; HV current limiting fuses; arc deionisation; arc interrupters; binders; current levels; free radicals; gas evolving materials; interruption capability; local pressure; low current interruption; minimum interruption current; noninterruption band; power fuses; rated fuse current; ratings; short circuit tests; single barrel; switchgear; test methods; Additives; Circuit testing; Current limiters; Fuses; Gases; Inorganic compounds; Materials testing; Paints; Resins; Voltage;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Transmission and Distribution Conference, 1994., Proceedings of the 1994 IEEE Power Engineering Society
  • Conference_Location
    Chicago, IL
  • Print_ISBN
    0-7803-1883-8
  • Type

    conf

  • DOI
    10.1109/TDC.1994.328357
  • Filename
    328357