Magnesium alloy smelting protection solvent and preparation method thereof
A magnesium alloy and solvent technology, applied in the field of protective solvent for magnesium alloy smelting and its preparation, can solve the problems of low flux slag-making ability, poor separation of magnesium melt, pollute the environment, etc., and achieve the effect of excellent protective performance
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Embodiment 1
[0016] The invention provides a protective solvent for magnesium alloy smelting, and its chemical composition is: barium carbonate 15kg, calcium sulfate 15kg, nano zirconia 17kg, magnesium chloride 15kg, hydroxyapatite 20kg, magnesium silicate 20kg, and lithium chloride 5kg.
[0017] Meanwhile, the preparation method of the protective solvent for magnesium alloy melting is as follows:
[0018] 1) Dry the above raw materials separately at 100~120℃ for dehydration;
[0019] 2) Mix the above-mentioned dried raw materials and put them in a ball mill to grind them into powder, and the average particle size of the powder is less than 10μm;
[0020] 3) After sieving the above-mentioned powder, put it into a closed container for later use.
[0021] In the process of magnesium alloy smelting, the solvent melts into a liquid state at a temperature greater than 500°C, and the flux melts into a liquid state. It spreads on the surface of the alloy or magnesium liquid to isolate the air and prevent t...
Embodiment 2
[0023] The invention provides a protective solvent for magnesium alloy melting, and its chemical composition is: 8kg of barium carbonate, 12kg of calcium sulfate, 12kg of nano-zirconia, 12kg of magnesium chloride, 12kg of hydroxyapatite, 12kg of magnesium silicate, and 1kg of lithium chloride.
[0024] Meanwhile, the preparation method of the protective solvent for magnesium alloy melting is as follows:
[0025] 1) Dry and dehydrate the above raw materials separately at 100°C for 50 minutes;
[0026] 2) Mix the above-mentioned dried raw materials and put them in a ball mill to grind them into powder, and the average particle size of the powder is less than 10μm;
[0027] 3) After sieving the above-mentioned powder, put it into a closed container for later use.
[0028] In the process of magnesium alloy smelting, the solvent melts into a liquid state at a temperature greater than 500°C, and the flux melts into a liquid state. It spreads on the surface of the alloy or magnesium liquid to ...
Embodiment 3
[0030] The invention provides a protective solvent for magnesium alloy smelting, and its chemical composition is: barium carbonate 10kg, calcium sulfate 13kg, nano zirconia 13kg, magnesium chloride 13kg, hydroxyapatite 13kg, magnesium silicate 15kg, and lithium chloride 3kg.
[0031] Meanwhile, the preparation method of the protective solvent for magnesium alloy melting is as follows:
[0032] 1) Dry and dehydrate the above raw materials separately at 110°C for 40 minutes;
[0033] 2) Mix the above-mentioned dried raw materials and put them in a ball mill to grind them into powder, and the average particle size of the powder is less than 10μm;
[0034] 3) After sieving the above-mentioned powder, put it into a closed container for later use.
[0035] In the process of magnesium alloy smelting, the solvent melts into a liquid state at a temperature greater than 500°C, and the flux melts into a liquid state. It spreads on the surface of the alloy or magnesium liquid to isolate the air and...
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