• DocumentCode
    1848988
  • Title

    Surface treatment and alloying with high-power ion beams to improve properties in Al-, Fe-, and Ti-based metals

  • Author

    Renk, T.J. ; Buchheit, R.G. ; Sorensen, N.R. ; Cowell Senft, D. ; Thompson, M.O. ; Grabowski, K.S.

  • Author_Institution
    Sandia Nat. Labs., Albuquerque, NM, USA
  • Volume
    1
  • fYear
    1997
  • fDate
    June 29 1997-July 2 1997
  • Firstpage
    192
  • Abstract
    Intense pulsed high-power ion beams have been demonstrated to produce enhanced surface properties by changes in microstructure caused by rapid heating and cooling of the surface. Additional improvements can be effected by the mixing of a previously deposited thin-film layer (surface alloying or ion beam mixing) into any number of substrate materials. We have conducted surface treatment and alloying experiments with Al, Fe, and Ti-based metals on the RHEPP-1 accelerator (0.8 MV, 20 /spl Omega/, 80 ns FHWM, up to 1 Hz repetition rate) at Sandia National Laboratories. Ions are generated by the MAP gas-breakdown active anode, which can yield a number of different beam species including H, N, and Xe, depending upon the injected gas. Enhanced hardness and wear resistance have been produced by treatment of 440C stainless steel, and by the mixing of Pt into Ti-6AL-4V alloy. Mixing of a thin-film Hf layer into Al 6061-T6 alloy (Al-1.0Mg-0.6Si) has improved its corrosion resistance by as much as four orders of magnitude in electrochemical testing, compared with untreated and uncoated A16061. Experiments are ongoing to further understand the microstructural basis for these surface improvements.
  • Keywords
    surface treatment; 0.8 V; 1 Hz; 20 ohm; 440C stainless steel; 80 ns; Al 6061-T6 alloy; Al-1.0Mg-0.6Si; Al-Mg-Si; Al-based metals; Fe-based metals; H; H beam; MAP gas-breakdown active anode; N; N beam; Pt; RHEPP-1 accelerator; Sandia National Laboratories; Ti-6AL-4V alloy; Ti-Al-V-Pt; Ti-based metals; Xe; Xe beam; alloying; corrosion resistance improvement; electrochemical testing; enhanced surface properties; hardness enhancement; high-power ion beams; ion beam mixing; microstructure; pulsed high-power ion beams; rapid cooling; rapid heating; substrate materials; surface alloying; surface treatment; thin-film Hf layer; thin-film layer; wear resistance enhancement; Alloying; Conducting materials; Cooling; Heating; Ion beams; Iron; Microstructure; Sputtering; Substrates; Surface treatment;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Pulsed Power Conference, 1997. Digest of Technical Papers. 1997 11th IEEE International
  • Conference_Location
    Baltimore, MA, USA
  • Print_ISBN
    0-7803-4213-5
  • Type

    conf

  • DOI
    10.1109/PPC.1997.679304
  • Filename
    679304