• Title of article

    Oxidation resistance improvement of arc-evaporated TiN hard coatings by silicon addition

  • Author/Authors

    Steyer، نويسنده , , P. and Pilloud، نويسنده , , D. and Pierson، نويسنده , , J.F. and Millet، نويسنده , , J.-P. and Charnay، نويسنده , , M. and Stauder، نويسنده , , B. and Jacquot، نويسنده , , P.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    5
  • From page
    4158
  • To page
    4162
  • Abstract
    Ti–Si–N coatings were deposited on M2 steel by arc evaporation using a Ti–Si composite target in an industrial reactor. The films structure before and after heat treatment at 700 °C was characterised by XRD. In addition, two types of quantitative experiments were performed in thermobalance: oxidation rate was deduced from isothermal thermogravimetric analyses at 800 °C, while the temperature of oxidation beginning (Tc) was measured in dynamic mode. Tc was then calculated by a mathematical approximation based on the non-linear least square. The results were compared to those obtained using TiN and SiNx standards. ing on the deposition conditions, ternary films have been deposited with an atomic ratio Si/Ti of 0.10 and 0.15. The hardness of the films was close to 40 GPa. Only the TiN phase was detected by XRD. The mean crystal size was estimated to be in the 6–8 nm range, which suggested the nanocomposite nature of the coatings. After air oxidation at 700 °C, it was found that this crystal size was not affected by the thermal treatment, indicating a good thermal stability of the structure. Moreover, incorporation of silicon into TiN-based coatings led to a drastic decrease of their oxidation rate, together with a shift of 200 °C of Tc. The high resistance of oxidation of Ti–Si–N films at elevated temperature is attributable to the network of refractory SiNx, which acted as a diffusion barrier for oxygen and insulated TiN nanograins from the aggressive atmosphere.
  • Keywords
    Nanocomposite , Ti–Si–N , structure , Oxidation behaviour , nitrides
  • Journal title
    Surface and Coatings Technology
  • Serial Year
    2006
  • Journal title
    Surface and Coatings Technology
  • Record number

    1814462