• Title of article

    Laser produced functionally graded tungsten carbide coatings on M2 high-speed tool steel

  • Author/Authors

    M. Riabkina-Fishman، نويسنده , , M and Rabkin، نويسنده , , E and Levin، نويسنده , , P and Frage، نويسنده , , N and Dariel، نويسنده , , M.P and Weisheit، نويسنده , , A and Galun، نويسنده , , R and Mordike، نويسنده , , B.L، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2001
  • Pages
    9
  • From page
    106
  • To page
    114
  • Abstract
    The objective of the investigation was to produce functionally graded, carbide alloyed multilayer coatings on M2 high-speed steel by laser alloying with direct injection of WC powder into the melt pool. Single layer coatings with a wide alloying range corresponding to 12–58 wt.% W and 1.3–4.3 wt.% C, respectively, were produced by varying laser beam power and beam traverse velocity. Depending on the alloying degree, four different types of structures were observed in laser alloyed coatings; they were characterized by scanning electron microscopy and X-ray microanalysis. Multiple laser alloying with beam power decreasing at each successive stage was used for producing a triple-layer coating with tungsten content increasing from layer to layer and reaching 75 wt.% in the upper layer. The observed hardness was in the 1100–1200 HV range for single layer coatings with 40–50% W and as high as 1600 HV in the upper layer of a triple coating with 75% W. The coating with 58 wt.% W showed wear resistance five times as high as compared with the unalloyed laser-melted M2 steel.
  • Keywords
    Laser alloying , Laser cladding , FGM , WC functionally graded coatings
  • Journal title
    MATERIALS SCIENCE & ENGINEERING: A
  • Serial Year
    2001
  • Journal title
    MATERIALS SCIENCE & ENGINEERING: A
  • Record number

    2136624