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EFFECT OF TECHNOLOGICAL PARAMETERS ON MOLD POWDER ENTRAINMENT BY WATER MODEL STUDY

机译:水模型研究工艺参数对结晶器粉体夹带的影响

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摘要

In continuous casting process, mold powder has lots of metallurgical effects, such as covering the molten steel to prevent liquid steel from oxidation by air, preserving heat for top layer liquid steel, lubricating initial shell and so on. However, mold powder also can deteriorate the quality of final products obviously after the entrapment of mold powder in steel. In the present work, based on the similarity theory the effect of technological parameters on mold powder entrainment was investigated by water model. Experiment was carried out in the water mold using oil and water to simulate slag and steel, respectively. The results showed that increasing casting speed increased the water-oil interfacial fluctuation and entrainment frequency; viscosity of oil also had a great impact on the interface fluctuation and entrainment; water-oil interfacial tension effect the entrainment while not changing the interfacial fluctuation; submergence depth had little impact on entrainment and interfacial fluctuation.
机译:在连铸过程中,保护渣粉末具有许多冶金作用,例如覆盖钢水以防止钢水被空气氧化,为钢水顶层保留热量,润滑初始壳体等。但是,在将防霉粉夹在钢中后,防霉粉也会明显降低最终产品的质量。在目前的工作中,基于相似理论,通过水模型研究了工艺参数对结晶器粉末夹带的影响。在水模中进行了实验,分别使用油和水模拟炉渣和钢。结果表明,提高浇铸速度会增加水油界面波动和夹带频率。油的粘度也对界面起伏和夹带有很大影响;水-油界面张力在不改变界面波动的情况下影响夹带。浸没深度对夹带和界面波动影响很小。

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