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Tungsten carbide and its shapes

With DURMAT® achieve improved, higher-performance wear alloys

The high demands made today on the wear resistance of alloys based on Tungsten carbide and Cobalt are leading to ever finer microstructures with optimized compositions. This results in improved, higher-performance wear alloys.

DURMAT®Chem.
Composition
HardnessApplicationsFeatures
WSCWC-W2C2.360HV0.1Deep drilling tools, drill pipes, crushers, mixers, concrete and stone saws, transport screws, extruder housingsArmoring of surfaces subject to extremely high mechanical stresses consisting of abrasion and friction
SWSCWC-W2C3.000HV0.1Deep drilling tools, drill pipes, crushers, mixers, concrete and stone saws, transport screws, extruder housingsArmoring of surfaces subject to extremely high mechanical stresses consisting of abrasion and friction
RF 13WC-Co 94/61.950-2.050HV0.1Rock bits, special tools for deep drillingWC Co alloy with fine WC
Very good abrasion and corrosion resistance
MCWCMonocrystalline tungsten carbide
with 6.12 % C content
1.600HV0.1PTA coatings on wear partsGood wear resistance
Good thermal stability
Less hardness than WSC/SWSC
WC IVBroken tungsten carbide
with 6-10 % Co content
1.500-1.800HV0.1Mining, deep drilling technology, tool joints in the oil industryHigh wear resistance
Especially suitable for cutting tool

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