ENi6620 nickel-based welding rod for alternating current and preparation method and welding method thereof
A technology of eni6620 and nickel-based electrodes, which is applied in the field of AC ENi6620 nickel-based electrodes and its preparation, can solve the problems of inability to maintain low-temperature toughness, easy to generate magnetic deflection blowing, and insufficient arc blowing force, so as to facilitate the transition of rare earth elements, The effect of stabilizing the arc and improving arc stability
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Embodiment 1
[0057] Get pure nickel welding mandrel wire 100Kg, each composition in the welding core is (wt%): C 0.0045%, Mn 0.025%, Si0.019%, P 0.0013%, S 0.0010%, Ni 99.64%, Fe 0.024%, surplus The amount is an essential impurity.
[0058] Take the coating, and the components and parts by mass of the coating are as follows:
[0059] 7.5 parts by weight of marble, 4.5 kg of strontium carbonate, 7 kg of fluorite, 3.5 kg of potassium ice crystal powder, 1 kg of potassium fluoroborate, 3.5 kg of rutile, 6 kg of electrolytic manganese, 27 kg of metallic chromium, 19 kg of ferromolybdenum, 2.5 kg of ferro-titanium, 4 kg of tungsten powder, Ferroniobium 7.5kg, soda ash 1kg, potassium titanate 3kg, rare earth fluoride 1kg, zirconia 1kg, rare earth ferrosilicon 1kg.
[0060] Mix the components of the above drug skin evenly, add pure potassium water glass accounting for 22% of the total mass content of the drug powder, the Baume concentration at 20°C is 42-43°Be, and stir for 10-15min. It is wrap...
Embodiment 2
[0069] This embodiment is all the same as Example 1 except that the weights of the ingredients in the drug skin are different.
[0070] The weight of each component in the medicine skin in this embodiment is as follows: 6.5kg of marble, 5.5kg of strontium carbonate, 8kg of fluorite, 3kg of potassium ice crystal powder, 0.8kg of potassium fluoroborate, 4kg of rutile, 7.2kg of electrolytic manganese, 26.5kg of metallic chromium, ferromolybdenum 17.5kg, ferrotitanium 3kg, tungsten powder 3.6kg, ferroniobium 6.2kg, soda ash 1.2kg, potassium titanate 3.5kg, rare earth fluoride 1.5kg, zirconia 0.5kg, rare earth ferrosilicon 1.5kg.
[0071] The chemical composition of weld deposited metal obtained after welding is as follows:
[0072] C: 0.014wt%, Mn: 2.44wt%, Si: 0.23wt%, S: 0.0054wt%, P: 0.0032wt%, Cr: 13.07wt%, Ni: 71.53wt%, Mo: 5.95wt%, Cu: 0.022wt%, Nb 0.88wt%, Fe 4.51wt%, W1.31wt%, Ta 0.015wt%, and the rest 0.13wt%.
[0073] The mechanical properties of deposited metal are as...
Embodiment 3
[0077] The present embodiment is all identical with embodiment 1 except that each component weight is different in the drug skin.
[0078]The weight of each component in the medicine skin in the present embodiment is as follows: 8 kg of marble, 3 kg of strontium carbonate, 6 kg of fluorite, 4.8 kg of potassium ice crystal powder, 1.2 kg of potassium fluoroborate, 4 kg of rutile, 5.5 kg of electrolytic manganese, 25.8 kg of metallic chromium, and 16 kg of ferromolybdenum , ferro-titanium 4kg, tungsten powder 3.2kg, ferroniobium 5.8kg, soda ash 1.6kg, potassium titanate 3.7kg, rare earth fluoride 3kg, zirconia 2kg, rare earth ferrosilicon 2.4kg.
[0079] The chemical composition of the deposited weld metal after welding is as follows:
[0080] C: 0.016wt%, Mn: 2.25wt%, Si: 0.26wt%, S: 0.0064wt%, P: 0.0038wt%, Cr: 13.19wt%, Ni: 71.61wt%, Mo: 5.65wt%, Cu: 0.018wt%, Nb 0.91wt%, Fe 3.90wt%, W1.33wt%, Ta 0.011wt%, and the rest 0.11wt%.
[0081] The mechanical properties of deposite...
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