Low-hydrogen flux-cored wire suitable for high-strength steel and preparation method thereof
A technology of flux-cored welding wire and high-strength steel, applied in welding equipment, welding medium, manufacturing tools, etc., can solve the problem of unstable welding performance, and achieve the effect of good forming, improving welding performance and stable quality
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Embodiment 1
[0034] 1. A low-hydrogen flux-cored welding wire suitable for high-strength steel. The flux-cored welding wire is composed of a sheath and a flux core, wherein the sheath is a nickel strip, and the composition of the flux core is calculated by mass percentage: CaF 2 45%, K 2 ZrF 6 4%, LiF 7%, Al8%, Mn 5%, Cr 4%, Mg 7%, Si 1%, B 1%, RE 2 o 3 3%, TiO 5%, CaO 4%, and the balance is Fe. The composition of the nickel strip is calculated by mass percentage: Ni+Co≥99.5%, Cu≤0.06%, Fe≤0.10%, Mn≤0.05%, C≤0.10%, Si≤0.10%, S≤0.005%. The thickness of the skin is 0.5 mm, and the width is 10 mm.
[0035] 2. A method for preparing a low-hydrogen flux-cored welding wire suitable for high-strength steel, said method comprising the steps of selecting:
[0036] S1: Preparation of powder
[0037]1) Drying: After the ingredients in the drug core are made into 100-mesh powder, the non-oxide components are dried at 160°C for 3 hours; the oxide components are first dried at 160°C for 3 hour...
Embodiment 2
[0043] 1. A low-hydrogen flux-cored welding wire suitable for high-strength steel. The flux-cored welding wire is composed of a sheath and a flux core, wherein the sheath is a nickel strip, and the composition of the flux core is calculated by mass percentage: CaF 2 42%, K 2 ZrF 6 6%, LiF 10%, Al12%, Mn 5%, Cr 3%, Mg 6%, Si 1%, B 1%, RE 2 o 3 2%, TiO 4%, CaO 3%, and the balance is Fe. The composition of the nickel strip is calculated by mass percentage: Ni+Co≥99.5%, Cu≤0.06%, Fe≤0.10%, Mn≤0.05%, C≤0.10%, Si≤0.10%, S≤0.005%. The thickness of the skin is 0.5 mm and the width is 12 mm.
[0044] 2. A method for preparing a low-hydrogen flux-cored welding wire suitable for high-strength steel, said method comprising the steps of selecting:
[0045] S1: Preparation of powder
[0046] 1) Drying: After the ingredients in the drug core are made into 100-mesh powder, the non-oxide components are dried at 160°C for 3 hours; the oxide components are first dried at 170°C for 3 ho...
Embodiment 3
[0052] 1. A low-hydrogen flux-cored welding wire suitable for high-strength steel. The flux-cored welding wire is composed of a sheath and a flux core, wherein the sheath is a nickel strip, and the composition of the flux core is calculated by mass percentage: CaF 2 40%, K 2 ZrF 6 5%, LiF 10%, Al10%, Mn 7%, Cr 3.5%, Mg 7%, Si 2%, B 2%, RE 2 o 3 2%, TiO 4%, CaO 3.5%, and the balance is Fe. The composition of the nickel strip is calculated by mass percentage: Ni+Co≥99.5%, Cu≤0.06%, Fe≤0.10%, Mn≤0.05%, C≤0.10%, Si≤0.10%, S≤0.005%. The skin has a thickness of 0.5mm and a width of 8mm.
[0053] 2. A method for preparing a low-hydrogen flux-cored welding wire suitable for high-strength steel, said method comprising the steps of selecting:
[0054] S1: Preparation of powder
[0055] 1) Drying: After the ingredients in the drug core are made into 100-mesh powder, the non-oxide components are dried at 160°C for 3 hours; the oxide components are first dried at 150°C for 3 hour...
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