Alloy powder special for laser 3D printing high-hardness nickel base alloy
A 3D printing and nickel-based alloy technology, applied in the direction of additive processing, can solve the problems of limiting the size of 3D printing parts, the wear resistance of parts is not high, affecting the performance of parts, plasticity, tensile strength and fatigue performance, etc., to achieve reduction Application range, the effect of high hardness
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Embodiment 1
[0015] The mass percentage of raw materials is: 0.9% carbon (C), 2.5% tungsten (W), 20.0% chromium (Cr), 1.6% titanium (Ti), 2.0% molybdenum (Mo), 1.5% vanadium ( V), 0.15% niobium (Nb), and the balance nickel (Ni), the sum of which is 100% by weight.
[0016] Using the above alloy powder method to prepare special alloy powder for laser 3D printing high hardness nickel-based alloy.
Embodiment 2
[0018] The mass percentage of raw materials is: 1.3% carbon (C), 2.0% tungsten (W), 25.0% chromium (Cr), 1.2% titanium (Ti), 2.5% molybdenum (Mo), 1.0% vanadium ( V), 0.7% niobium (Nb), and the balance nickel (Ni), the sum of which is 100% by weight.
[0019] Using the above alloy powder method to prepare special alloy powder for laser 3D printing high hardness nickel-based alloy.
Embodiment 3
[0021] The mass percentage of raw materials is: 1.1% carbon (C), 2.2% tungsten (W), 22.5% chromium (Cr), 1.6% titanium (Ti), 2.2% molybdenum (Mo), 1.2% vanadium ( V), 0.4% niobium (Nb), and the balance nickel (Ni), the sum of which is 100% by weight.
[0022] Using the above alloy powder method to prepare special alloy powder for laser 3D printing high hardness nickel-based alloy.
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