Method for producing 23MnB steel in converter process
A converter and process technology, which is applied in the field of iron and steel metallurgy, can solve the problems of difficult control of continuous casting machines, failure to take into account the influence, and clogging of the nozzles of continuous casting machines.
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[0028] The method for converter flow process production 23MnB steel, comprises the steps:
[0029] a. Add molten iron to the converter for smelting;
[0030]b. The molten steel is tapped to the ladle. Calcium carbide is added to the molten steel during tapping. The amount of calcium carbide is based on the carbon content at the end of the primary smelting of the converter. When the weight percentage of carbon at the end point of the converter is greater than 0.10% and less than 0.15%, 2.5-3.5 kg per ton of molten steel is added; The weight percentage content of acid-soluble aluminum in molten steel is 0.014-0.019%;
[0031] c. Move the ladle into the LF furnace for refining, stop heating when the temperature of the molten steel reaches 1570-1585°C, add aluminum to the molten steel to make the acid-soluble aluminum content in the molten steel 0.025-0.055% by weight, and then add titanium to make the titanium weight in the molten steel The percentage content is 0.02-0.06%, add...
Embodiment 1
[0043] The technology of the present invention is used to produce 23MnB steel on the converter process with a nominal capacity of 120 tons and an actual steel tapping within the range of 120 to 140 tons. The production process is 120 tons of converter primary molten steel → 120 tons of LF furnace refining molten steel → 6 A 6-strand billet continuous casting machine casts a 280mm×380mm billet.
[0044] First, add 130 tons of molten iron and 10 tons of steel scrap into the converter, and use the function of the converter to blow oxygen to remove C, and initially smelt the molten iron and scrap steel into molten steel. , 0.01% Si and 0.05% Mn are tapped into the ladle. At this time, the actual tapping amount is 133 tons, and about 5% of the raw materials are burned during the converter smelting process. Add 530kg of calcium carbide to the molten steel during the tapping process, and the calcium carbide contains CaC 2 75%, and at the same time add FeSi, FeMn alloy and anthracite...
Embodiment 2
[0048] The technology of the present invention is used to produce 23MnB steel on the converter process with a nominal capacity of 120 tons and an actual steel tapping within the range of 120 to 140 tons. The production process is 120 tons of converter primary molten steel → 120 tons of LF furnace refining molten steel → 6 A 6-strand billet continuous casting machine casts a 360mm×450mm billet.
[0049] First, add 120 tons of molten iron and 20 tons of scrap steel into the converter, and use the function of oxygen blowing and de-C of the converter to initially smelt the molten iron and scrap steel into molten steel. , 0.01% Si and 0.05% Mn are tapped into the ladle. At this time, the actual tapping amount is 133 tons, and about 5% of the raw materials are burned during the converter smelting process. Add 400kg of calcium carbide to the molten steel during the tapping process. The calcium carbide contains CaC 2 75%, and at the same time add FeSi, FeMn alloy and anthracite to al...
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