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Water Modeling of Self-Braking Submerged Entry Nozzle Used for Steel Continuous Casting Mold

机译:钢连续铸造模具自硬式浸入式水口的水模型

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摘要

Slag entrainment in a continuous casting mold is one of the major causes of macro nonmetallic inclusions in continuous casting steel products. Stabilizing the level fluctuation is an important factor to improve steel quality. A new type of submerged entry nozzle (SEN) named self-braking SEN was designed. In the current study, water modeling experiments were performed to study the effect of self-braking SEN on level fluctuation in a continuous casting slab mold. The level position and the root mean square value of level fluctuation were analyzed through the online detection data. The results showed that the flow in the mold was more symmetrical and the tracer dispersion was more uniform. Moreover, the meniscus was also more uniform than the conventional nozzle with the self-braking SEN, especially at high casting speed.
机译:连铸结晶器夹渣是连铸钢产品中大量非金属夹杂物的主要原因之一。稳定水平波动是提高钢质的重要因素。设计了一种新型的浸入式水口(SEN),称为自制动SEN。在当前的研究中,进行了水模型实验以研究自制动SEN对连铸板坯模具中液位波动的影响。通过在线检测数据分析了水平波动的水平位置和均方根值。结果表明,模具中的流动更对称,示踪剂分散更均匀。此外,弯月面也比带有自制动SEN的常规喷嘴更均匀,尤其是在高浇铸速度下。

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