Tungsten electrode argon arc welding solid cored welding wire used for welding ultralow-temperature high manganese steel
A technology of argon tungsten arc welding and solid wire, which is applied in the direction of welding medium, welding equipment, welding/cutting medium/material, etc., can solve the problems of structure and performance changes, high price, element diffusion, etc., and reduce solidification cracks , Excellent ultra-low temperature toughness, guaranteed mechanical effect
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Embodiment 1
[0016] A solid wire for argon tungsten arc welding (hereinafter referred to as argon tungsten arc welding solid wire) for ultra-low temperature high manganese steel welding. The chemical composition of the argon tungsten arc welding solid wire is: C is 0.25~0.35wt%, Mn is 23~24wt%, Ni is 9.4~10wt%, W is 3.0~3.8wt%, P≤0.002wt %, S≤0.001wt%, the balance is Fe and unavoidable impurities.
[0017] The argon tungsten arc welding solid wire for ultra-low temperature high manganese steel welding prepared in this example has a diameter of Φ2.4mm, and adopts the argon tungsten arc welding method; the ultra-low temperature high manganese steel is 12mm thick 25Mn ultra-low temperature steel.
[0018] The chemical composition of the 25Mn ultra-low temperature steel is: C is 0.40~0.50wt%, Si is 0.10~0.20wt%, Mn is 20~28wt%, N is 0.01~0.08wt%, P is ≤0.005wt%, S is ≤0.003wt%. The mechanical properties of the 25Mn ultra-low temperature steel are: tensile strength ≥ 400MPa, yield strength ≥...
Embodiment 2
[0025] A tungsten argon arc welding solid wire for ultra-low temperature high manganese steel welding. Except following, all the other are with embodiment 1:
[0026] The chemical composition of the argon tungsten arc welding solid wire is: C is 0.35~0.45wt%, Mn is 25~26wt%, Ni is 8.8~9.4wt%, W is 3.8~4.4wt%, P≤0.002 wt%, S≤0.001wt%, the balance is Fe and unavoidable impurities.
[0027] The diameter of the solid welding wire prepared in this embodiment is Φ2.4 mm. Detect and analyze the microstructure and mechanical properties of the weld metal after welding in this example: the weld metal is a fully austenitic structure without solidification cracks and reheat cracks; the yield strength of the weld metal is 466~485MPa, and the resistance The tensile strength is 658~680MPa, the elongation A=41~43%, and the average value of impact energy at -196°C is A kv =62~78J.
Embodiment 3
[0029] A tungsten argon arc welding solid wire for ultra-low temperature high manganese steel welding. Except following, all the other are with embodiment 1:
[0030] The chemical composition of the argon tungsten arc welding solid wire is: C is 0.45~0.55wt%, Mn is 24~25wt%, Ni is 8.0~8.8wt%, W is 4.4~5.0wt%, P≤0.002 wt%, S≤0.001wt%, the balance is Fe and unavoidable impurities.
[0031] The diameter of the solid welding wire prepared in this embodiment is Φ2.4mm.
[0032] Detect and analyze the microstructure and mechanical properties of the weld metal after welding in this example: the weld metal is a fully austenitic structure without solidification cracks and reheat cracks; the yield strength of the weld metal is 435~466MPa, and the resistance The tensile strength is 625~658MPa, the elongation A=43~44%, and the average value of impact energy at -196°C is A kv =78~94J.
[0033] Compared with the prior art, this specific embodiment has the following positive effects: ...
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