Control method for carbon content of FeV80 alloy
A control method and carbon content technology, applied in the field of metallurgy, can solve problems such as no public reports, and achieve the effect of easy operation
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Embodiment 1
[0023] at 8t V 2 o 5 The raw materials are smelted in three phases and the slag is discharged twice. Smelting Raw Material V 2 o 5 , Fe, Al, and lime have carbon contents of 0.01%, 0.06%, 0.13%, and 0.33%, respectively. For conventional smelting, the total electrification time is 88 minutes. After the third phase of smelting, the TV content in the slag is 1.30%, the ferrovanadium smelting yield is 96.8%, and the alloy carbon content is 0.15%.
Embodiment 2
[0025] at 8t V 2 o 5 The raw materials are smelted in three phases and the slag is discharged twice. Smelting Raw Material V 2 o 5 , Fe, Al, and lime have carbon contents of 0.01%, 0.06%, 0.13%, and 0.33%, respectively. In the third stage, 480kg of decarburizer FeO was mixed into the batching, and the total electrification time was 95min (extra electrification for 7min before casting). After the smelting, the TV content in the slag is 1.32%, the smelting yield of ferrovanadium is 96.6%, and the carbon content of the alloy is 0.08%.
Embodiment 3
[0027] at 3t V 2 o 5 The raw material is smelted according to the one-step process. After the smelting is completed, the slag and iron are produced together, and the smelting raw material V 2 o 5 The carbon contents of Fe, Al, and lime are 0.01%, 0.06%, 0.15%, and 0.36%, respectively. Add 100kg of decarburizer FeO and spread it on the bottom of the casting ingot mold, and the total power-on time is 25min. After the smelting, the TV content in the slag is 1.36%, the smelting yield of ferrovanadium is 96.3%, and the carbon content of the alloy is 0.07%.
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