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Optimization of flow control devices in a ten-strand billet caster tundish

机译:十流钢坯中间包中流量控制装置的优化

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The physical model of a ten-strand billet caster tundish was established to study the effects of various flow control devices on the melt flow. Before and after the optimization of the melt flow, the inclusion removal in the tundish was evaluated by plant trials. The physical modeling results show that when combined with a baffle, the turbulence inhibitor, instead of the impact pad, can significantly improve the melt flow. A turbulence inhibitor with a longer length of inner cavity and without an extending lip at the top of the sidewall seems to be efficient in the improvement of the melt flow. Various types and designs of baffles all influence the flow characteristics significantly. The “V” type baffles are better than the straight baffles for flow control. The “V” type baffle with four inclined holes at the sidewall away from the stopper rods is better in melt flow control than the one with one inclined hole at each sidewall. The combination of a well-designed turbulence inhibitor and an appropriate baffle shows high efficiency on improving the melt flow and an optimal proposal was presented. Plant trials indicate that, compared with the original tundish configuration in prototype, the inclusions reduce by 42% and the inclusion distribution of individual strands is more similar with the optimal one. The optimal tundish configuration effectively improves the melt flow in the ten-strand billet caster tundish.
机译:建立了十流坯坯连铸机中间包的物理模型,以研究各种流量控制装置对熔体流动的影响。在优化熔体流动的前后,通过工厂试验对中间包中的夹杂物去除进行了评估。物理模型结果表明,当与挡板组合使用时,湍流抑制剂代替冲击垫可以显着改善熔体流动。具有更长的内腔长度并且在侧壁的顶部没有延伸的唇缘的湍流抑制剂似乎在改善熔体流动方面是有效的。各种类型和设计的挡板都会显着影响流动特性。对于流量控制,“ V”型挡板比直型挡板更好。 “ V”型挡板的侧壁上有四个倾斜孔,远离止动杆,其熔融流动控制要好于每个侧壁上有一个倾斜孔的挡板。设计良好的湍流抑制剂和适当的挡板的组合显示出在改善熔体流动方面的高效率,并提出了最佳方案。工厂试验表明,与原型中的原始中间包配置相比,夹杂物减少了42%,单股夹杂物的分布与最佳夹杂物的分布更为相似。最佳的中间包配置可有效改善十股方坯连铸机中间包中的熔体流动。

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