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Simulation of coagulation of non-metallic inclusions in tundish and their trapping into solidified shell in continuous casting mould

机译:连铸结晶器中间包中非金属夹杂物的凝固过程及其向凝固壳中的俘获模拟

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摘要

A mathematical model simulating the coagulation and flotation of non-metallic inclusions in the tundish and continuous casting mould was developed based on turbulence coagulation and Stokes coagulation. From the simulation in the tundish, it was found that Stokes coagulation is dominant in the tundish. In the mould, the simulation result was that argon bubbles become the desirable sites where alumina inclusions are gathered and form large alumina clusters. The influence of the liquid steel flow in the mould applied by an in-mould electromagnetic stirring technique on the trapping rate of non-metallic inclusions into the solidified shell was examined. The horizontal flow in front of the shell was found to be effective for disturbing the trapping and decreasing the population of large non-metallic inclusions in the shallow surface layer of cast slabs. This effect was interpreted by the lift force applied to non-metallic inclusions in the velocity boundary layer formulated.
机译:基于湍流凝聚和斯托克斯凝聚,建立了一个模拟模型,模拟了中间包和连铸结晶器中非金属夹杂物的凝固和浮选。通过对中间包的模拟,发现斯托克斯凝结在中间包中占主导地位。在模具中,模拟结果是氩气气泡成为聚集氧化铝夹杂物并形成大型氧化铝簇的理想位置。研究了通过模内电磁搅拌技术施加的结晶器中钢水的流动对非金属夹杂物向凝固壳中的俘获率的影响。已发现壳前的水平流对于扰动俘获并减少铸坯浅表层中大的非金属夹杂物的数量有效。施加的速度边界层中施加到非金属夹杂物的升力可以解释这种效果。

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