A kind of nickel-based alloy welding wire for high temperature alloy fusion welding and its preparation method and application
A technology of nickel-based alloys and high-temperature alloys, which is applied in welding equipment, welding equipment, metal processing equipment, etc., can solve the problems of not being able to meet the use requirements, not being able to be prepared into wire materials, and easily forming cracks, etc., to achieve moderate fluidity, temperature High, low corrosion effect
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Embodiment 1
[0029] In this embodiment, the base material to be welded is nickel-based superalloy K4951.
[0030] The chemical composition of the welding wire in this example is (wt.%): C 0.8%, Cr 15.0%, Co 15.5%, Al 8.5%, W5.5%, Mo 4.5%, Nb 4.5%, Y 0.5%, Fe 0.5%, Si 0.5%, the rest is Ni, the master alloy ingot is smelted in a vacuum melting furnace, and the master alloy ingot is smelted in a vacuum induction furnace. Master alloy ingots were produced.
[0031] Welding wire preparation method: Melt the master alloy ingot in a directional solidification furnace at a melting temperature of 1400°C, pour the melted master alloy liquid into an alumina ceramic shell with a cavity diameter of 2.1mm through the liquid outlet, and fill it with Pull out the ceramic shell at a pulling speed of 1 mm / min for directional solidification; break the solidified and cooled ceramic shell, take out the welding wire, and remove the scale on the welding wire on a centerless grinder to obtain the welding wire ma...
Embodiment 2
[0034] In this embodiment, the base material to be welded is nickel-based superalloy K4951.
[0035] The chemical composition of the welding wire in this example is (wt.%): C 0.5%, Cr 5.0%, Co 1.5%, Al 2.5%, W2.5%, Mo 1.5%, Nb 1.8%, Y 0.5%, Fe 0.5%, Si 0.3%, the rest is Ni, the master alloy ingot is smelted by vacuum melting furnace, and the master alloy ingot is smelted by vacuum induction furnace. , to obtain a master alloy ingot.
[0036] Welding wire preparation method: Melt the master alloy ingot in a directional solidification furnace at a melting temperature of 1600°C, pour the melted master alloy liquid into an alumina ceramic shell with a cavity diameter of 1.1 mm through the liquid outlet, and fill it with Pull out the ceramic shell at a pulling speed of 1mm / min for directional solidification; break the solidified and cooled ceramic shell, take out the welding wire, and remove the scale on the welding wire on a centerless grinder to obtain the welding wire material ...
Embodiment 3
[0039] In this embodiment, the base material to be welded is nickel-based superalloy K4951.
[0040]The chemical composition of the welding wire in this example is (wt.%): C 0.3%, Cr 10.0%, Co 2.5%, Al 4.5%, W7.5%, Mo 8.5%, Nb 7.5%, Y 0.5%, Fe 0.3%, Si0.5%, the rest is Ni, the master alloy ingot is smelted by vacuum melting furnace, and the master alloy ingot is smelted by vacuum induction furnace. , to obtain a master alloy ingot.
[0041] Welding wire preparation method: Melt the master alloy ingot in a directional solidification furnace at a melting temperature of 1500°C, pour the melted master alloy liquid into an alumina ceramic shell with a cavity diameter of 1.9 mm through the liquid outlet, and fill it with Pull out the ceramic shell at a pulling speed of 1mm / min for directional solidification; break the solidified and cooled ceramic shell, take out the welding wire, remove the scale on the welding wire on a centerless grinder, and obtain the welding wire with a diame...
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