Method for controlling hypodermic bubble defect of wide and thick slab of medium carbon steel
A slab and carbon steel technology, which is applied in the field of controlling medium-carbon steel wide and thick slab subcutaneous bubble defects, can solve the problems of medium-carbon steel slab-like bubble defects, increase the labor workload of workers, and reduce the hot delivery rate of casting slabs. Achieve the effects of increasing the proportion of solid-phase slab shell, reducing the amount of slab cleaning, and reducing the scrap rate
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Embodiment 1
[0012] Embodiment 1: The specific process of the method for controlling subcutaneous air bubble defects in wide and thick slabs of medium carbon steel is as follows.
[0013] (1) The cast steel type is medium carbon steel, the main component content (wt): C 0.30%, Si 0.22%, Mn 0.53%, P0.012%, S 0.003%, Al 0.021%; the specification of continuous casting slab: 330mm ×2400mm, casting speed is 0.65m / min.
[0014] (2) After pouring, use low-alkalinity crystallizer mold slag with an alkalinity of 1.0; adopt a suitable cooling strength in the curved section and control it at 0.18kg / L; use a lower reduction rate in the light-reduction area to control At 0.60mm / m; using a solid stopper, the parameters of argon blowing in the middle cladding ring gap are: the actual pressure is controlled at 0.20MPa, and the flow rate of argon blowing is controlled at 2L / min.
[0015] (3) The continuous casting slab obtained in this example was inspected on the surface, and no subcutaneous bubble-like ...
Embodiment 2
[0016] Embodiment 2: The specific process of the method for controlling subcutaneous air bubble defects in wide and thick slabs of medium carbon steel is as follows.
[0017] (1) The casting steel type is medium carbon steel, the main component content (wt): C 0.55%, Si 0.20%, Mn 0.55%, P0.011%, S0.002%, Al 0.023%; the specifications of the continuous casting slab are: 330mm×2100mm, casting speed is 0.70m / min.
[0018] (2) After pouring, use low-alkalinity crystallizer mold slag with an alkalinity of 1.1; adopt a suitable cooling strength in the bending section and control it at 0.23kg / L; use a lower reduction rate in the light-reduction area to control At 0.70mm / m; using a solid stopper rod, the parameters of argon blowing in the middle cladding ring seam are: the pressure is actually controlled at 0.30MPa, and the flow rate of argon blowing is controlled at 4L / min.
[0019] (3) The continuous casting slab obtained in this example was inspected on the surface, and no subcuta...
Embodiment 3
[0020] Embodiment 3: The specific process of the method for controlling subcutaneous air bubble defects in wide and thick medium carbon steel slabs is as follows.
[0021] (1) The casting steel type is medium carbon steel, the main component content (wt): C 0.50%, Si 0.20%, Mn 0.56%, P0.010%, S 0.003%, Al 0.025%; continuous casting slab specification: 330mm ×2200mm, the casting speed is 0.65m / min.
[0022] (2) After pouring, use low-alkalinity crystallizer mold slag with an alkalinity of 1.05; adopt a suitable cooling strength in the curved section and control it at 0.20kg / L; use a lower reduction rate in the light-reduction area to control At 0.65mm / m; using a solid stopper, the argon blowing parameters in the middle cladding ring seam are: the pressure is actually controlled at 0.25MPa, and the flow rate of argon blowing is controlled at 3L / min.
[0023] (3) The continuous casting slab obtained in this example was inspected on the surface, and no subcutaneous bubble-like de...
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