• Title of article

    Cermet coatings with Fe-based matrix as alternative to WC–CoCr: Mechanical and tribological behaviours

  • Author/Authors

    Bolelli، نويسنده , , Giovanni and Bِrner، نويسنده , , Tim and Bozza، نويسنده , , Francesco and Cannillo، نويسنده , , Valeria and Cirillo، نويسنده , , Gennaro and Lusvarghi، نويسنده , , Luca، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2012
  • Pages
    16
  • From page
    4079
  • To page
    4094
  • Abstract
    Recently, cermet coatings with Fe-based metal matrix have emerged as a less hazardous and more environmentally friendly alternative to WC–Co-based ones, which have known inhalation toxicity problems. This study therefore aimed to validate WC-based cermet coatings with Fe-based matrix, obtained using a commercially available feedstock powder, as an alternative to WC–CoCr. prayed WC–15 wt.%FeCrAl layers were therefore obtained using different oxygen and fuel (kerosene) flow rates and powder feed rates; their mechanical and tribological properties were compared to HVOF-sprayed WC–10 wt.% Co–4 wt.%Cr. –FeCrAl coatings always exhibited equi-biaxial compressive residual stress state and possessed dense microstructures, with homogeneous metal matrix, but they contained more oxide inclusions than WC–CoCr. Their characteristics were significantly affected by the normalised oxygen-fuel ratio (λ). but meaningful differences existed between the ball-on-disc sliding wear rates of the various WC–FeCrAl coatings, the best sample being that with the most favourable combination of compressive residual stress, low oxidation and high hardness/modulus (H/E) ratio. Its sliding wear resistance was comparable to that of WC–CoCr. The cyclic ball impact resistance of WC–FeCrAl layers was also comparable to that of WC–CoCr, but the dry particle abrasion resistance was inferior, because of the brittleness induced by the oxide inclusions.
  • Keywords
    WC–FeCrAl cermet , Sliding wear , Abrasive wear , Residual stress , High Velocity Oxygen-Fuel (HVOF) spraying , Cyclic impact behaviour
  • Journal title
    Surface and Coatings Technology
  • Serial Year
    2012
  • Journal title
    Surface and Coatings Technology
  • Record number

    1825928