High wear resistance surfacing alloy material containing multiphase metal ceramics
An alloy material and cermet technology, which is applied in the field of materials, can solve the problems of poor wettability of TiC-based cermet weldable matrix metal, easy cracks in the surfacing layer, and poor fluidity of the molten pool, etc., and achieves a wide range of applications. , Improve fracture strength and fracture toughness, low cost effect
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Embodiment 1
[0019] Mix ferrochrome, ferrotitanium, ferrovanadium, rare earth materials, ferroboron, ferromolybdenum, aluminum powder, ferronickel, powder materials, sodium potassium water glass, carbon black and iron powder with a particle size of 70 to 140 mesh evenly, and then place Press it into a block in a mold, dry it in natural wind for at least 24 hours, then dry it at 60°C for 1 hour, and then heat it up to 150°C for 5 hours to make a high wear-resistant surfacing alloy material containing multi-phase cermets, in which rare earth The material is LaO; its composition is 25% by weight of ferrochrome, 5% of ferro-titanium, 5% of ferro-vanadium, 2% of rare earth materials, 5% of ferro-boron, 5% of ferro-molybdenum, 4% of aluminum powder, 7% of ferronickel, 10% powder material, 10% sodium potassium water glass, 5% carbon black, 13% iron; wherein the powder material is a mixture of TiN powder and TiC powder, the weight content of TiN powder is 5%, and the weight content of TiC powder is...
Embodiment 2
[0022] Mix ferrochrome, ferrotitanium, ferrovanadium, rare earth materials, ferroboron, ferromolybdenum, aluminum powder, ferronickel, powder materials, sodium potassium water glass, carbon black and iron powder with a particle size of 70 to 140 mesh evenly, and then place Press it into a block in a mold, dry it naturally for at least 24 hours, then dry it at 50°C for 0.5h, and then heat it up to 200°C for 4 hours to make a high wear-resistant surfacing alloy material containing multi-phase cermets, in which rare earth The material is LaO; its composition is 30% by weight of ferrochrome, 1% of ferro-titanium, 1% of ferro-vanadium, 0.1% of rare earth materials, 1% of ferro-boron, 0.4% of ferro-molybdenum, 0.5% of aluminum powder, 1% of ferronickel, 0.2% powder material, 8% sodium potassium water glass, 0.1% carbon black, and the balance is iron; wherein the powder material is a mixture of TiN powder and TiC powder, the weight content of TiN powder is 0.1%, and the weight content...
Embodiment 3
[0025] Mix ferrochrome, ferrotitanium, ferrovanadium, rare earth materials, ferroboron, ferromolybdenum, aluminum powder, ferronickel, powder materials, sodium potassium water glass, carbon black and iron powder with a particle size of 70 to 140 mesh evenly, and then place Press it into a block in a mold, dry it naturally for at least 24 hours, then dry it at 60°C for 0.5h, and then heat it up to 250°C for 3 hours to make a high wear-resistant surfacing alloy material containing multi-phase cermets, in which rare earth The material is LaO; its composition is 28% by weight of ferrochrome, 3% of ferro-titanium, 3% of ferro-vanadium, 1% of rare earth materials, 3% of ferro-boron, 2% of ferro-molybdenum, 1% of aluminum powder, 4% of ferronickel, 3% powder material, 9% sodium potassium water glass, 2% carbon black, and the balance is iron; wherein the powder material is a mixture of TiN powder and TiC powder, the weight content of TiN powder is 1%, and the weight content of TiC powd...
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