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Influences of SEN structures on flow characters, temperature field and shell distribution in 420 mm continuous casting mould

机译:SEN结构对420 mm连铸结晶器流动特性,温度场和壳体分布的影响

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摘要

Ultrathick continuous slab casting is a growing technology, especially in developing countries due to the vast market demand of thick rolled plate. The structure of the submerged entry nozzle is regarded as the crucial factor to determine flow related phenomena in the mould. This article conducts a 0-55 scale water model and a three-dimensional numerical model to investigate the influences of submerged entry nozzle on flow behaviour, temperature field and solidified shell distribution in a 420 mm ultrathick slab mould. Physical and numerical finite volume methods with K-e turbulence model simulations verify that the flow pattern in ultrathick mould is similar with that in conventional slab mould. The diffuse type nozzle fails to increase the surface velocity while easily causing slag entrainment. The four-spout nozzle gives a detrimental effect on shell distribution. The tunnel bottom nozzle is optimal, because it shows a lively surface behaviour and a favourable heat transfer between mould flux and surface flow, and the shell thickness is uniform and thick enough at the mould exit to avoid breakout.
机译:超厚板坯连铸是一项正在发展的技术,特别是在发展中国家,由于厚轧板的巨大市场需求。浸入式注嘴的结构被认为是确定模具中与流动相关的现象的关键因素。本文进行了一个0-55比例的水模型和一个三维数值模型,以研究浸入式注水口对420 mm超厚板坯模具中流动特性,温度场和凝固壳分布的影响。用K-e湍流模型模拟的物理和数值有限体积方法验证了超厚模具的流型与常规板坯模具的流型相似。扩散型喷嘴不能提高表面速度,而容易引起夹渣。四喷嘴的喷嘴对壳体的分布有不利影响。隧道底部喷嘴是最佳的,因为它显示了活跃的表面行为,并且在结晶剂通量和表面流之间具有良好的传热效果,并且壳的厚度均匀且在结晶器出口处足够厚,可以避免破裂。

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