• DocumentCode
    2563768
  • Title

    Commercial applications and equipment for ion beam surface treatment

  • Author

    Stinnett, Regan W. ; Neau, Eugene L. ; Barrett, David M. ; Lamppa, Kerry P. ; White, Forrest E.

  • Author_Institution
    Quantum Manuf. Technol. Inc., Albuquerque, NM, USA
  • Volume
    2
  • fYear
    2000
  • fDate
    2000
  • Firstpage
    671
  • Abstract
    The capability to reliably produce rapidly pulsed, intense ion beams with beam geometry suitable for commercial surface treatment applications has remained elusive, in spite of the effort of many researchers. Work at Quantum Manufacturing Technologies, Inc. (QMT) since 1996 has resulted in commercial equipment that can produce rapidly pulsed, intense ion beams, and in commercial applications for these beams. QMT´s QM1 facility uses magnetic switching to achieve pulse compression from a 60 Hz wall plug power to 150 ns pulses with over 60% electrical efficiency. A magnetically-confined anode plasma (MAP) ion beam system is used to convert this electrical energy into a 3 billion watt beam of ions. This system has now produced a half million ion beam pulses with typical beam parameters of 0.5 kJ/pulse of ions, ion energy of 400 keV, pulse length of 150 ns, and pulse repetition rates of up to 5 pulses per second. Beams of either hydrogen or nitrogen ions are typically produced. This system functions reliably in automated commercial operation, incorporating, real time fault detection and synchronization with automated part handling. Confirmed applications for this capability include smoothing of metal surfaces by rapid melt and resolidification, production of harder, more wear resistant surfaces for tools and dies, hardening of polymer surfaces by crosslinking, and stripping coatings from carbide tools. The new capabilities offered by ion beam surface treatment have clear applications in many markets, including treatment of medical parts, tools, and dies
  • Keywords
    anodes; hardening; ion beam applications; ion beams; magnetic switching; melting; plasma confinement; plasma materials processing; pulsed power switches; solidification; surface treatment; synchronisation; 150 ns; 400 keV; 60 Hz; QM1 facility; Quantum Manufacturing Technologies; automated part handling; beam geometry; carbide tool coating stripping; commercial surface treatment applications; crosslinking; dies; electrical efficiency; hydrogen ions; ion beam surface treatment; ion energy; magnetic switching; magnetically-confined anode plasma ion beam; medical parts; metal surfaces smoothing; nitrogen ions; polymer surfaces hardening; pulse compression; pulse repetition rates; pulsed intense ion beams; rapid melt; real time fault detection; resolidification; synchronization; tools; wear resistant surfaces; Anodes; Dies; Geometry; Ion beams; Magnetic switching; Manufacturing; Medical treatment; Plugs; Pulse compression methods; Surface treatment;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Discharges and Electrical Insulation in Vacuum, 2000. Proceedings. ISDEIV. XIXth International Symposium on
  • Conference_Location
    Xi´an
  • Print_ISBN
    0-7803-5791-4
  • Type

    conf

  • DOI
    10.1109/DEIV.2000.879079
  • Filename
    879079