邱春根, 时朋召, 徐李军, 等. 250 mm x 1800 mm板坯连铸结晶器浸入式水口优化的物理模拟[J]. 特殊钢, 2017,38(2):11-15.
邱春根, 时朋召, 徐李军, et al. Physical Simulation on Optimization of Submerged entry Nozzle for 250 mm x 1800 mm Slab Casting Mold[J]. Special Steel, 2017, 38(2): 11-15.
邱春根, 时朋召, 徐李军, 等. 250 mm x 1800 mm板坯连铸结晶器浸入式水口优化的物理模拟[J]. 特殊钢, 2017,38(2):11-15.DOI:
邱春根, 时朋召, 徐李军, et al. Physical Simulation on Optimization of Submerged entry Nozzle for 250 mm x 1800 mm Slab Casting Mold[J]. Special Steel, 2017, 38(2): 11-15.DOI:
the effect of nozzle structure (lateral holes type
hole dimension and clip angle:S1-rectangle
6868 mm
2
-25°; S2- racing way type
8468 mm
2
-15°; S3-ellipse
8011 mm
2
-15°)
casting speed (0.85~1.05 m/min) and immersion depth 55~75 mm on mold liquid level fluctuation
distribution of flow field and mold flux coverage condition has been studied. Results show that with decreasing dimension and dip angle of lateral holes
the liquid surface wave height increases
as dimension of lateral holes decreases by 5.4%
the wave height increases by about 32.4% ; with increasing casting speed and decreasing immersion depth the wave height increases; and with increasing dimension and dip angle of lateral holes and casting speed the i
mpact depth increases. With present nozzle S2 the fluctuation of liquid level is very small it is unfavorable for melting mold powder and uniformly heal-transferring and with present nozzle S1 the impact depth is too large
it is unavailable to remove inclusions in liquid
but with optimized nozzle S3 the fluctuation of liquid level and impact depth are more reasonable
the flux becomes more active
it is available to melt mold powder and remove inclusions in liquid.