Nickel base alloy welding wire with weld deposit metal capable of being recrystallized
A nickel-based alloy, deposited metal technology, applied in the field of ultra-supercritical power station welding materials, can solve the problems of obvious structure, large residual stress of welded joints, composition segregation, etc. good plasticity
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Embodiment 1
[0027] see figure 1 , use this welding wire (Φ1.5mm) to weld IN740H nickel-based alloy by manual TIG welding, welding current: 140A, welding voltage: 13V, welding speed: 110mm / min, current type / polarity: DC DC / positive connection SP, interlayer temperature not higher than 100°C, protective gas: Ar, gas flow rate 13L / min. Heat treatment at 1050℃ / 1h after welding, the weld microstructure changed from post-weld columnar crystals and dendrites to equiaxed crystals, and no defects such as welding cracks occurred. After welding, the hardness of the weld is 310HV, and the impact toughness is 22kJ; after post-weld heat treatment, the hardness is reduced to 215HV, and the impact toughness is 31kJ.
Embodiment 2
[0029] see figure 2 , use this welding wire (Φ2.4mm) to weld GH2984 nickel-iron-based alloy by manual TIG welding, welding current: 160A, welding voltage: 14V, welding speed: 120mm / min, current type / polarity: DC / Directly connected to SP, interlayer temperature not higher than 100°C, protective gas: Ar, gas flow rate 15L / min. Heat treatment at 1100℃ / 30min after welding, the weld microstructure changed from post-weld columnar crystals and dendrites to equiaxed crystals, and no defects such as welding cracks occurred. After welding, the hardness of the weld is 300HV, and the impact toughness is 26kJ; after post-weld heat treatment, the hardness is reduced to 210HV, and the impact toughness is 46kJ.
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