Welding material for butt fusion welding transition layer of titanium-steel composite board and preparation method of welding material
A technology of welding materials and composite plates, applied in the direction of welding/cutting medium/material, welding equipment, welding medium, etc., can solve the problem of welding materials without fusion welding butt joint titanium-steel composite plates, and facilitate large-scale mass production , Excellent toughness, small diameter effect
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[0024] The preparation method of the welding material for the fusion welding butt joint transition layer of the above-mentioned titanium-steel clad plate, the specific operation steps are as follows:
[0025] Step 1, Smelting
[0026] Weigh the following pure metal powders by weight percentage: Mn3.15-3.35%, Cr18-27%, Cu0.01-0.015%, Ti0.35-0.55%, Co0.03-0.04%, Nb1.8-2.0% , Ta0.2-0.6%, and the balance is Ni. Put the Ni, Cr, Nb, and Ta powders weighed above into the MgO crucible in the vacuum induction furnace for melting, and put the Cr, Nb, and Ta powders in the center of the nickel powder After the metal powder in the furnace is completely melted into molten steel, it is refined at 1550°C for 20 minutes, then the temperature of the molten steel is lowered to 1540°C, filled with argon to make the furnace reach 300-380mmHg, and then the weighed Mn, Cu, Ti and Co are added into the molten steel in turn, and the steel is tapped after stirring for 2 minutes. The tapping temperatu...
Embodiment 1
[0032] Step 1, Smelting
[0033] Take the following pure metal powders by weight percentage: Mn3.15%, Cr18%, Cu0.01%, Ti0.35%, Co0.035%, Nb2.0%, Ta0.6%, and the balance is Ni; The Ni, Cr, Nb, and Ta powders weighed above are put into the MgO crucible in the vacuum induction melting furnace for melting, and the Cr, Nb, and Ta powders are placed in the center of the nickel powder; Refining at 1550°C for 20 minutes, then lowering the temperature of the molten steel to 1540°C, filling the furnace with argon to make the furnace reach 300mmHg, then adding the weighed Mn, Cu, Ti, and Co powders into the molten steel in sequence, stirring for 2 minutes, and tapping , the tapping temperature is 1540°C, and it is poured into the ingot mold. During the pouring process, the temperature of the molten steel should be kept at 1540°C. At the same time, pay attention to the calm surface of the molten steel, and the pouring is even. , and then take out the ingot and cool it to room temperature...
Embodiment 2
[0040] Step 1, Smelting
[0041] Take the following pure metal powders by weight percentage: Mn3.20%, Cr21%, Cu0.012%, Ti0.35%, Co0.03%, Nb1.95%, Ta0.5%, and the balance is Ni. The Ni, Cr, Nb and Ta powders weighed above are put into the MgO crucible in the vacuum induction melting furnace for melting, and the Cr, Nb and Ta powders are placed in the center of the nickel powder; Refining at ℃ for 20min, then lowering the temperature of molten steel to 1540℃, filling the furnace with argon to make the furnace reach 350mmHg, then adding the weighed Mn, Cu, Ti, Co powders into the molten steel in sequence, stirring for 2min and then tapping, The tapping temperature is 1540°C, and it is poured into the ingot mold. During the pouring process, the temperature of the molten steel should be kept at 1540°C. At the same time, pay attention to the smooth surface of the molten steel and uniform pouring. After the pouring, store the ingot mold in a vacuum chamber for 30 minutes. Then take ...
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