曹磊, 王国连, 史志强, 等. Nb-V-Ti 微合金低碳钢 Q550D 250 mm x 1820 mm连铸板坯角部横裂纹的控制工艺[J]. 特殊钢, 2017,38(5):47-49.
曹磊, 王国连, 史志强, et al. Control Measures of 250 mm x 1820 mm Casting Slab Corner Transverse Cracks of Nb-V-Ti Micro-Alloying Low-Carbon Steel Q550D[J]. Special Steel, 2017, 38(5): 47-49.
曹磊, 王国连, 史志强, 等. Nb-V-Ti 微合金低碳钢 Q550D 250 mm x 1820 mm连铸板坯角部横裂纹的控制工艺[J]. 特殊钢, 2017,38(5):47-49.DOI:
曹磊, 王国连, 史志强, et al. Control Measures of 250 mm x 1820 mm Casting Slab Corner Transverse Cracks of Nb-V-Ti Micro-Alloying Low-Carbon Steel Q550D[J]. Special Steel, 2017, 38(5): 47-49.DOI:
Nb-V-Ti 微合金低碳钢 Q550D 250 mm x 1820 mm连铸板坯角部横裂纹的控制工艺
The casting slab corner transverse cracks of steel Q550D (/% : 0.15C
0.25Si
1.40Mn
≤0.010P
≤0.002S
0.03Nb
0.06V
0.015Ti
0.020Alt) have been analyzed to get the comer transverse cracks form in mold and further develop at secondary cooling area
besides at bending part ( Ⅲ brittle zone) of slab
the tensile-stress action of outer face of slab is also an important factor for corner cracking. With the process measures including decreasing water flow rate of width face of mold by 200 L/min and of narrow face by 20 L/min
improving precision of arc each other from ±0.5 mm to ±0.3 mm
improving the amplitude and vibration frequency respectively from 4~5 mm and 130~136 opm to 3.6~4.5 mm and 140~146 opm
increasing the mold taper from 0.9
%~1.0% to 1.0%~1.1%
improving edge natural cooling at secondary section to nozzle cooling
and decreasing nitrogen content in steel from ≤60 x 10
-6
to ≤40 x 10
-6
the occurring rate of comer cracks markedly decreases.