Brazing filler metal for welding of high-temperature alloy and cupronickel and preparation method thereof
A high-temperature alloy and solder technology, applied in welding equipment, welding/cutting medium/material, welding medium, etc., can solve problems such as reducing the performance of high-temperature alloys
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Embodiment 1
[0013] This embodiment is a brazing filler metal for welding GQGH4169 superalloy and B19 cupronickel. It consists of manganese, cobalt, nickel, phosphorus, tin, silicon, aluminum, zinc and copper to form copper-manganese-cobalt-nickel brazing filler metal, and to form copper-manganese-cobalt The percentages of each component of the nickel solder are 26% manganese, 14% cobalt, 1.5% nickel, 0.03% phosphorus, 0.02% tin, 0.02% silicon, 0.01% aluminum and 0.01% zinc, and the balance is copper. The copper-manganese-cobalt-nickel solder is in the form of a foil with a thickness of 0.1 mm.
[0014] The present embodiment also proposes a method for preparing copper-manganese-cobalt-nickel solder, comprising the following steps:
[0015] Step 1, prepare manganese, cobalt, nickel and copper with a purity of 99.95% in proportion, place them in a crucible and melt them at 1000°C to obtain a liquid alloy; pour the liquid alloy into a mould, cool naturally and solidify to obtain cast rod; ...
Embodiment 2
[0019] This embodiment is a brazing filler metal for welding GQGH4169 superalloy and B19 cupronickel. It consists of manganese, cobalt, nickel, phosphorus, tin, silicon, aluminum, zinc and copper to form copper-manganese-cobalt-nickel brazing filler metal, and to form copper-manganese-cobalt The percentages of the components of the nickel solder are 28% manganese, 12% cobalt, 2.5% nickel, 0.03% phosphorus, 0.02% tin, 0.02% silicon, 0.01% aluminum and 0.01% zinc, and the balance is copper. The copper-manganese-cobalt-nickel solder is in the form of a foil with a thickness of 0.1 mm.
[0020] This embodiment also proposes a method for preparing copper-manganese-cobalt-nickel solder.
[0021] Step 1, prepare manganese, cobalt, nickel and copper with a purity of 99.95% in proportion, place them in a crucible and melt them at 1000°C to obtain a liquid alloy; pour the liquid alloy into a mould, cool naturally and solidify to obtain cast rod;
[0022] Step 2, processing the obtaine...
Embodiment 3
[0025] This embodiment is a brazing filler metal for welding GQGH4169 superalloy and B19 cupronickel. It consists of manganese, cobalt, nickel, phosphorus, tin, silicon, aluminum, zinc and copper to form copper-manganese-cobalt-nickel brazing filler metal, and to form copper-manganese-cobalt The percentages of the components of the nickel solder are 33% manganese, 13% cobalt, 1.5% nickel, 0.03% phosphorus, 0.02% tin, 0.02% silicon, 0.01% aluminum and 0.01% zinc, and the balance is copper. The copper-manganese-cobalt-nickel solder is in the form of a foil with a thickness of 0.1 mm.
[0026] This embodiment also proposes a method for preparing copper-manganese-cobalt-nickel solder.
[0027] Step 1, prepare manganese, cobalt, nickel and copper with a purity of 99.95% in proportion, place them in a crucible and melt them at 1000°C to obtain a liquid alloy; pour the liquid alloy into a mould, cool naturally and solidify to obtain cast rod;
[0028] Step 2, processing the obtaine...
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Abstract
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