A kind of smelting process of low-carbon high-sulfur free-cutting steel
A free-cutting steel and high-sulfur technology, which is applied in the smelting process of low-carbon and high-sulfur free-cutting steel, can solve the problems of affecting the quality of the cast slab, slag entrainment, shutdown due to less flow, unstable flow control, etc. The effect of quality, reduction of warping defects, and risk reduction
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Embodiment 1
[0019] This embodiment is a smelting process of low-carbon high-sulfur free-cutting steel, comprising the following steps:
[0020] (1) Stir after the converter tapping to reduce the oxidation of molten steel. The converter tapping requires the terminal oxygen to be ≤ 600ppmm. According to the terminal oxygen, add 1.2kg / t aluminum block for deoxidation, add low-carbon ferromanganese 10kg / t, ferrosilicon alloy 0.3kg / t, Pyrite 15kg / t and lime 5kg / t alloyed;
[0021] (2) Use slag pouring first before tapping and use slag-stopping cone to block slag tapping to prevent slag dropping and converter slag from being involved in the ladle;
[0022] (3) Refining slag is Al 2 o 3 -CaO-SiO 2 , the alkalinity is controlled between 1.5-2.5;
[0023] (iv) According to the oxygen level of molten steel, calcium wire 100m is used for precipitation deoxidation during the refining process, bottom stirring is used for stirring at 100l / min, and aluminum wire 10kg, silicon barium calcium 80kg and...
Embodiment 2
[0028] This embodiment is a smelting process of low-carbon high-sulfur free-cutting steel, comprising the following steps:
[0029] (1) Stir after the converter tapping to reduce the oxidation of molten steel. The converter tapping requires the terminal oxygen to be ≤ 600ppmm. According to the terminal oxygen, add 1.6kg / t aluminum block for deoxidation, add low-carbon ferromanganese 12kg / t, ferrosilicon alloy 0.4kg / t, Pyrite 17kg / t and lime 8kg / t alloyed;
[0030] (2) Use slag pouring first before tapping and use slag-stopping cone to block slag tapping to prevent slag dropping and converter slag from being involved in the ladle;
[0031] (3) Refining slag is Al 2 o 3 -CaO-SiO 2 , the alkalinity is controlled between 1.5-2.5;
[0032] (iv) According to the oxygen level of molten steel, during the refining process, 10m of aluminum wire and 150m of calcium wire are used for precipitation deoxidation, the bottom stirring is 150l / min, and 15kg of aluminum wire, 90kg of silicon...
Embodiment 3
[0037] This embodiment is a smelting process of low-carbon high-sulfur free-cutting steel, comprising the following steps:
[0038] (1) Stir after the converter tapping to reduce the oxidation of molten steel. The converter tapping requires the terminal oxygen to be ≤ 600ppmm. According to the terminal oxygen, add 2.0kg / t aluminum block for deoxidation, add low-carbon ferromanganese 15kg / t, ferrosilicon alloy 0.6kg / t, Pyrite 20kg / t and lime 7kg / t alloyed;
[0039] (2) Use slag pouring first before tapping and use slag-stopping cone to block slag tapping to prevent slag dropping and converter slag from being involved in the ladle;
[0040] (3) Refining slag is Al 2 o 3 -CaO-SiO 2 , the alkalinity is controlled between 1.5-2.5;
[0041] (iv) According to the oxygen level of molten steel, during the refining process, 50m of aluminum wire and 200m of calcium wire are used for precipitation deoxidation, the bottom stirring is 200l / min, and 20kg of aluminum wire, 100kg of silico...
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