Vacuum forced oxygen blowing decarburization method
An oxygen blowing decarburization and vacuum technology, applied in the field of metallurgy, can solve the problems of low production efficiency, prolonged decarburization treatment time, slow vacuum degree drop process, etc., to reduce carbon content, good decarburization effect, and high decarburization efficiency. Effect
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Embodiment 1
[0028] The semi-steel after vanadium extraction and desulfurization of vanadium-containing titanium hot metal is used as raw material for primary molten steel, wherein the semi-steel contains 3.41% of C, 0.041% of Mn, 0.062% of P, 0.003% of S, 0.04% V and traces of Cr, Si and Ti, the balance being iron and unavoidable impurities.
[0029] Specific steps:
[0030] (1) Add 231 tons of the above-mentioned semi-steel into a 220-ton (nominal capacity) top-bottom combined blowing converter, and utilize the function of oxygen blowing and decarburization of the top-bottom combined blowing converter to initially smelt the above-mentioned semi-steel into molten steel. When the molten steel is initially smelted to a C content of 0.058wt%, a Mn content of 0.032wt%, a P content of 0.0081wt%, a S content of 0.0051wt%, and a temperature of 1671°C, the thick slag begins to be tapped into the ladle.
[0031] (2) The small platform is treated with argon blowing, and the temperature of the smal...
Embodiment 2
[0038] The semi-steel after vanadium extraction and desulfurization of vanadium-containing titanium hot metal is used as raw material for primary molten steel, wherein the semi-steel contains 3.52% of C, 0.05% of Mn, 0.062% of P, 0.002% of S, 0.04% V and traces of Cr, Si and Ti, the balance being iron and unavoidable impurities.
[0039] Specific steps:
[0040] (1) Add 233 tons of the above-mentioned semi-steel into a 220-ton (nominal capacity) top-bottom combined blowing converter, and use the function of the top-bottom combined blowing converter to blow oxygen and decarburize the above-mentioned semi-steel into molten steel. When the molten steel is initially smelted to a C content of 0.066wt%, a Mn content of 0.033wt%, a P content of 0.0085wt%, a S content of 0.0046wt%, and a temperature of 1668°C, the thick slag begins to be tapped into the ladle.
[0041] (2) The small platform is treated with argon blowing, and the temperature of the small platform is 1598°C.
[0042]...
Embodiment 3
[0048] The semi-steel after vanadium extraction and desulfurization of vanadium-containing titanium hot metal is used as raw material for primary molten steel, wherein the semi-steel contains 3.42% of C, 0.04% of Mn, 0.065% of P, 0.004% of S, 0.04% V and traces of Cr, Si and Ti, the balance being iron and unavoidable impurities.
[0049] Specific steps:
[0050] (1) Add 236 tons of the above-mentioned semi-steel into a 220-ton (nominal capacity) top-bottom re-blowing converter, and use the function of the top-bottom re-blowing converter to decarburize the above-mentioned semi-steel into molten steel. When the molten steel is initially smelted to a C content of 0.076wt%, a Mn content of 0.032wt%, a P content of 0.0082wt%, a S content of 0.0055wt%, and a temperature of 1666°C, the thick slag begins to be tapped into the ladle.
[0051](2) The small platform is treated with argon blowing, and the temperature of the small platform is 1589°C.
[0052] (3) In the LF furnace, the a...
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