Smelting method for steelmaking by increasing vanadium through vanadium slag
A smelting method and a vanadium slag technology, applied in the field of metallurgy, can solve the problems of large influence of ladle refractories, high oxide content, and difficulty in guaranteeing the yield of vanadium, and achieve the effect of cost reduction
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Embodiment 1
[0033] After blowing in a 120t converter until the final composition is tapped, 390kg of ferrosilicon (FeSi75), 2315kg of silicomanganese (Mn68Si18), and 322kg of high-carbon ferromanganese (FeMn78C8.0) are added to the ladle. Lift the ladle to the LF furnace, add 452kg of lime and 147kg of fluorite, and raise the temperature to 1660°C. Sampling, the composition results are: C: 0.21%, Si: 0.45%, Mn: 1.35%, P: 0.03%, S: 0.018%, V: 0.004%; use nitrogen for bottom blowing and stirring, bottom blowing pressure 0.35MPa, add Vanadium slag 463kg, composition of vanadium slag is 14.3% vanadium oxide, 7.5% titanium oxide, 5.9% calcium oxide, 18.6% silicon oxide, 7.5% manganese oxide, 2.1% magnesium oxide, 1.2% aluminum oxide; after 5 minutes of bottom blowing, measure the temperature 1575°C. Hoist to the slag removal station for slag removal treatment, and the thickness of the slag is controlled below 100mm. Afterwards, it was hoisted back to the LF furnace, and the temperature was m...
Embodiment 2
[0035] After tapping from the 120t converter, add 378kg of ferrosilicon (FeSi75), 2320kg of silicomanganese (Mn68Si18), and 327kg of high-carbon ferromanganese (FeMn78C8.0) into the ladle. Lift the ladle to the LF furnace, add 460kg of lime and 152kg of fluorite, and raise the temperature to 1658°C. Sampling, the composition results are: C: 0.22%, Si: 0.44%, Mn: 1.36%, P: 0.025%, S: 0.02%, V: 0.002%. Nitrogen is used for bottom blowing and stirring, the bottom blowing pressure is 0.35MPa, and 459kg of vanadium slag is added. The composition of vanadium slag is 14.5% of vanadium oxide, 7.6% of titanium oxide, 5.6% of calcium oxide, 18.3% of silicon oxide, 7.2% of manganese oxide, and 2.2% of magnesium oxide. %, alumina 1.1%; after bottom blowing for 5 minutes, the temperature was measured at 1571°C. Hoist to the slag removal station for slag removal treatment, and the thickness of the slag is controlled below 100mm. Lift it back to the LF furnace, and measure the temperature ...
Embodiment 3
[0037]After tapping from the 120t converter, add 473kg of aluminum particles (Al), 678kg of carbon powder (C), and 1028kg of high-carbon ferromanganese (FeMn78C8.0) into the ladle. Lift the ladle to the LF furnace, add 496kg of lime, 155kg of fluorite, 98kg of aluminum particles (Al), and raise the temperature to 1665°C. Sampling, composition results are: C: 0.33%, Si: 0.18%, Mn: 0.65%, P: 0.015%, S: 0.002%, V: 0.002%, Cr: 0.04%, Ni: 0.01%, Cu: 0.01% . Nitrogen is used for bottom blowing and stirring, the bottom blowing pressure is 0.33MPa, and 895kg of vanadium slag is added. The composition of vanadium slag is 15.1% of vanadium oxide, 7.3% of titanium oxide, 5.7% of calcium oxide, 18.4% of silicon oxide, 7.2% of manganese oxide, and 2.2% of magnesium oxide. %, alumina 1.2%; after bottom blowing for 5 minutes, the temperature was measured at 1535°C. The temperature was raised to 1588°C. Hoist to the slag removal station for slag removal treatment, and the thickness of the ...
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