Preparation method for titanium-aluminium alloy
A technology of titanium aluminum alloy and titanium salt, which is applied in the field of alloys, can solve the problems of easy retention, low aluminum content, incomplete alloying, etc., and achieve the effects of easy cleaning, easy separation, and low impurity content
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[0020] In the preparation method of the titanium-aluminum alloy of the present invention, titanium is used as an anode and liquid aluminum is used as a cathode, and electrolysis is carried out in a molten salt electrolyte to prepare the titanium-aluminum alloy.
[0021] Wherein, in order to make the titanium ions in the molten salt have the driving force of the concentration difference of the reaction, the molten salt electrolyte is composed of the main molten salt NaCl-KCl and the soluble titanium salt; by mass ratio, NaCl-KCl:soluble titanium salt=100: 1-10; preferably NaCl-KCl:soluble titanium salt=100:1-5; the weight of soluble titanium salt is based on the mass of titanium therein.
[0022] Among them, in NaCl-KCl, by weight ratio, NaCl:KCl=70-90:100-120; preferably NaCl:KCl=75-85:100-105.
[0023] Further, as a preferred option, the soluble titanium salt is TiCl X and at least one of titanate, 2≤X≤4, the titanate is at least one of calcium titanate, iron titanate and so...
Embodiment 1
[0030] Take 80g of aluminum block and place it on the bottom of the graphite crucible as the liquid cathode. The graphite crucible is placed in an insulated alumina crucible, and then placed in a stainless steel reactor, with the graphite crucible as the cathode. Place the prepared NaCl-KCl (add 3% TiCl 2 ) as the molten salt system of the whole reaction, wherein, by weight ratio, NaCl:KCl=78:100. Take 50g waste titanium plate (the actual reaction is 20g) as a soluble anode for electrolysis.
[0031] At 750°C, the aluminum at the bottom of the graphite crucible has become liquid and melted, and a current of 3A is applied, and the titanium ions dissolved from the anode and the cathode aluminum form an alloy TiAl 3 . After the reaction is completed, the entire crucible is soaked in 0.5% dilute HCl to remove the molten salt, and the product taken out is washed with 50% alcohol and vacuum-dried to obtain 115g of titanium-aluminum alloy powder.
[0032] It is determined that th...
Embodiment 2
[0034] Get 125g aluminum piece and be placed on the bottom of graphite crucible, as liquid cathode. The graphite crucible is placed in an insulated alumina crucible, and then placed in a stainless steel reactor, with the graphite crucible as the cathode. The prepared NaCl-KCl (with 5% sodium fluotitanate added) was placed in the graphite crucible as the molten salt system for the whole reaction, wherein, by weight ratio, NaCl:KCl=70:100. Take 70g titanium sponge as a soluble anode for electrolysis.
[0035] At 730°C, the aluminum at the bottom of the graphite crucible has become liquid and melted, and a current of 5A is applied, and the titanium ions dissolved from the anode and the cathode aluminum form an alloy TiAl 3 . After the reaction is completed, the entire crucible is soaked in 0.5% dilute HCl to remove the molten salt, and the product taken out is washed with 50% alcohol and vacuum-dried to obtain 178g of titanium-aluminum alloy powder.
[0036] It was determined ...
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