A production method for improving converter smelting efficiency
A production method and converter smelting technology, which is applied in the manufacture of converters, etc., can solve problems such as unfavorable furnace condition maintenance, restricting production output, and affecting production efficiency, so as to improve converter smelting efficiency, reduce converter smelting slag volume, and improve composition hit rate effect
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Embodiment 1
[0053] This example provides a production method for improving converter smelting efficiency. The composition content of molten iron is C: 4.6%, Si: 0.40%, Mn: 0.15%, P: 0.129%, S: 0.030%, and the balance is Fe and not Impurities to avoid, molten iron temperature 1220°C, including the following measures:
[0054] Add ferromanganese alloy after pretreatment of molten iron to make the content ratio of manganese to silicon reach 0.9;
[0055] The converter adopts the top-bottom combined blowing mode. Lime, light-burned dolomite, and magnesium balls are added at one time 2 minutes before blowing to make slag.
[0056] When the converter blowing reaches 85%, the sub-lance measurement is carried out, and the end point control is carried out according to the sub-lance measurement results to ensure that the iron oxide content in the final smelting slag is 15% to 20%, and the manganese oxide content is 3.0% to 3.5%;
[0057] Adjust the flow rate of bottom blowing argon, and the flow r...
Embodiment 2
[0060] This example provides a production method for improving converter smelting efficiency. The composition content of molten iron is C: 4.8%, Si: 0.22%, Mn: 0.16%, P: 0.139%, S: 0.040%, and the balance is Fe and not To avoid impurities, the temperature of molten iron is 1290°C;
[0061] Add appropriate amount of ferromanganese alloy after pretreatment of molten iron, so that the content ratio of manganese to silicon reaches 1.0;
[0062] The converter adopts the top-bottom combined blowing mode. Lime, light-burned dolomite, and magnesium balls are added at one time 2 minutes before blowing to make slag.
[0063] When the converter blowing reaches 85%, the sub-lance measurement is carried out, and the end point control is carried out according to the sub-lance measurement results to ensure that the iron oxide content in the final smelting slag is 15% to 20%, and the manganese oxide content is 3.0% to 3.5%;
[0064] Adjust the flow rate of bottom blowing argon, and the flow ...
Embodiment 3
[0067] A production method for improving converter smelting efficiency provided in this example, the composition content of molten iron is C: 4.8%, Si: 0.45%, Mn: 0.12%, P: 0.139%, S: 0.040%, and the balance is Fe and not To avoid impurities, the temperature of molten iron is 1255°C;
[0068] Add appropriate amount of ferromanganese alloy after pretreatment of molten iron, so that the content ratio of manganese to silicon reaches 0.8;
[0069] The converter adopts the top-bottom combined blowing mode. Lime, light-burned dolomite, and magnesium balls are added at one time 2 minutes before blowing to make slag.
[0070] When the converter blowing reaches 85%, the sub-lance measurement is carried out, and the end point control is carried out according to the sub-lance measurement results to ensure that the iron oxide content in the final smelting slag is 15% to 20%, and the manganese oxide content is 3.0% to 3.5%;
[0071] Adjust the flow rate of bottom blowing argon, and the fl...
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