No-zinc-ammonium hot-dip galvanizing smokeless promotion flux
A technology of hot-dip galvanizing and fluxing agent, applied in hot-dip galvanizing process, coating, metal material coating process and other directions, can solve the problems of zinc liquid loss, leakage plating, large smoke, etc. Saving consumption and good plating effect
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Embodiment 1
[0023] A kind of non-zinc-ammonium hot-dip galvanizing smokeless plating flux composition is as follows: magnesium chloride 150g / L, calcium chloride 60g / L, sodium chloride 40g / L, cerium chloride 60g / L, Potassium fluoride 20g / L L, hydroxylamine hydrochloride 10g / L, sodium hydroxide 15g / L, sodium lauryl sulfate 5g / L, AEO-95g / L, and the balance is water. Stir the above components evenly to obtain the final flux. Heat to 70°C, put the cleaned malleable steel workpiece into the flux for 3 to 5 minutes, and then perform hot-dip galvanizing. There is no smoke during the galvanizing process, and 5% zinc ingot resource consumption can be saved.
Embodiment 2
[0025] A kind of zinc-ammonium-free hot-dip galvanizing smokeless plating flux composition is as follows: magnesium chloride 100g / L, calcium chloride 30g / L, sodium chloride 20g / L, cerium chloride 30g / L, potassium fluoride 10g / L L, hydroxylamine hydrochloride 7g / L, sodium hydroxide 10g / L, sodium dodecylsulfonate 5g / L, AEO-93g / L, and the balance is water. Stir the above components evenly to obtain the final flux. Heat to 60°C, put the cleaned low-alloy steel workpiece into the flux for 3 to 5 minutes, and then perform hot-dip galvanizing. There is no smoke during the galvanizing process, and 8% zinc ingot resource consumption can be saved.
Embodiment 3
[0027] A kind of non-zinc-ammonium hot-dip galvanizing smokeless plating flux composition is as follows: magnesium chloride 80g / L, calcium chloride 20g / L, sodium chloride 10g / L, cerium chloride 20g / L, Potassium fluoride 5g / L L, hydroxylamine hydrochloride 5g / L, sodium hydroxide 3g / L, sodium dodecylbenzenesulfonate 1g / L, OP-101g / L, and the balance is water. Stir the above components evenly to obtain the final flux. Heat to 50°C, put the cleaned ordinary carbon steel workpiece into the flux for 3 to 5 minutes, and then perform hot-dip galvanizing. There is no smoke during the galvanizing process, and 10% of zinc ingot resource consumption can be saved.
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