Abrasion Resistance

DataCoating/AlloyChemical CompositionApplication ProcessAverage HardnessVolume Loss mm³
   DPH 300gEst.Rc 
XC100088% Wc 12% CoHVOF110068-713.0
XC100083% Wc 17% CoHVOF100067-704.7
XC400075% Cr2C3 25% NiCrHVOF65062-643.2
XC600050% NiCrB 50% WcHVOF750645.9
XC7000Nickel-Cr-BoronHVOF 6011
XC8000Co-Cr-WHVOF 5718
Stellite 6Co-Cr-WTIG Actual 4064
Stellite 12Co-Cr-WTIG Actual 4757
Stellite 1Co-Cr-WTIG Actual 5452
56Nickel-Cr-BoronTIG Actual 4915
D2Tool SteelWROUGHT 6012
316Stainless SteelTIG N/A83
"C"Nickel-Cr-MoTIG 16105

The Coatings

TypeRcDescriptions
XC100068-70A composition of Cobalt saturated with 80-90% Sub-Micron sized Tungsten Carbide with a particulate hardness average of Rc 82, providing ultimate abrasion resistance.
XC200070-74An Oxide of Chromium combined with an Oxide of Silicon providing extreme abrasion resistance and hardness.
XC300065An Oxide of Aluminum producing very hard, dense, and smooth coatings. Resists very fine particulate abrasion. Corrosion resistant.
XC400055-65A composition of Nickel, Chromium, and Chromium Carbide producing an abrasion resistant. Coating with extreme corrosion resistance and excellent ductility, relative to hardness.
XC500060A proprietary composition of Molybdenum and Tungsten Carbide producing unique antigalling and abrasion resistance.
XC600055-60A Nickel-Chrome-Boron alloy system combined with 50-60% Tungsten Carbide providing extreme abrasion and corrosion resistance.
XC700060A Nickel-Chrome-Boron alloy system similar to "56" only much more abrasion resistant.
XC800058A Cobalt base alloy system similar to Stellite 12, only much more abrasion resistant.
XC-RD75-80Tungsten Carbide / Cobalt; A Unique sub-micron manufacturing process providing improved wear resistance over the traditional Wc/Co coating.