Method for preparing ferro-titanium
A technology of ferro-titanium alloy and titanium slag, which is applied in the field of titanium smelting, can solve the problems of high smelting cost, high reducing agent content, and increased production cost of products, and achieve the effect of reducing production cost and simple operation
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example 1
[0029] Melt 2t of titanium concentrate in an electric furnace at 1600°C. At the end, add 1.15t of potassium carbonate to the furnace and feed 250Nm 3 / min Oxygen stirring for 10 minutes, adding 100kg of iron, inserting graphite anode and connecting the molten iron cathode at the bottom, performing electrolysis at a constant voltage of 3V for 2 hours, and discharging hot molten iron and liquid titanium-iron alloy in argon protective atmosphere for cooling. Finally, dilute hydrochloric acid with a concentration of 2% was used to wash away the excess iron in the ferro-titanium alloy to obtain 1.25t of ferro-titanium alloy product, and its composition was analyzed as follows: Ti: 41.5%, C: 0.12%, Si: 0.5%, P: 0.03%, S : 0.02%, Al: 0.5%, Mn: 0.8%, Cu: 0.05%, and the rest of Fe, fully meet the FeTi-40B standard.
example 2
[0031] Melt 2t of titanium concentrate in an electric furnace at 1650°C. At the end, add 1.2t of sodium carbonate to the furnace and feed 200Nm 3 / min Oxygen stirring for 10 minutes, insert the graphite anode and connect the molten iron cathode at the bottom, carry out electrolysis at a constant voltage of 3.2V for 2 hours, and discharge the hot molten iron and liquid titanium-iron alloy in argon protective atmosphere for cooling, and finally use concentration 1.10t of ferro-titanium alloy product was obtained by washing away excess iron in the ferro-titanium alloy with 2% dilute hydrochloric acid, and its composition was analyzed as follows: Ti: 43.5%, C: 0.08%, Si: 0.5%, P: 0.03%, S: 0.02% , Al: 0.5%, Mn: 0.8%, Cu: 0.05%, and the rest of Fe fully meet the FeTi-40A standard.
example 3
[0033] Smelt 2t of titanium concentrate in an electric furnace at 1600°C. At the end, after removing 400kg of molten iron, add 1.15t of potassium carbonate to the furnace and feed 250Nm 3 / min Oxygen stirring for 10 minutes, inserting the graphite anode and connecting the molten iron cathode at the bottom, carrying out electrolysis at a constant voltage of 3V for 2 hours, under the argon protective atmosphere, discharging the hot molten iron and liquid titanium-iron alloy for cooling, and finally adopting a concentration of 2% dilute hydrochloric acid washes off the excess iron in the ferro-titanium alloy to obtain 750 kg of ferro-titanium alloy product, and its composition is analyzed as follows: Ti: 72.5%, C: 0.12%, Si: 0.5%, P: 0.03%, S: 0.02%, Al : 0.5%, Mn: 0.8%, Cu: 0.05%, and the rest of iron fully meet the FeTi-70B standard.
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