Optimizing of tundish structure in XingCheng Special Steel
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摘要: 以興澄特鋼連鑄中間包為工程背景,根據相似原理建立了中間包水模型系統,研究了4流不同結構的中間包的流體流動特性.研究表明:原結構的中間包同一側的兩流之間的流體流動特性存在很大差異,與內側流相比,外側流的最小停留時間、峰值時間小,死區體積大,造成中間包內鋼液溫度不均勻,夾雜物不能有效地上浮去除,不能很好地滿足高質量特鋼生產的要求.采用優化后的擋墻和壩組合的中間包控流裝置,外側和內側的停留時間分布趨于一致,表明外側流和內側流之間流動特性相近.中間包結構優化后平均死區百分數由原結構的58.2%降低到10.9%.Abstract: Based on the tundish in Xingcheng Special Steel, according to the similar principle, the water modeling system of the four-strand caster tundish was built. The simulating study shows that a large difference in flow characteristics exits between the two outlets at the same side of the tunish comparing with those of the former configuration. Compared to the inside outlet, the outside outlet has short minimum residence time and peak concentration time and larger dead zone volume. So the original design of the tundish can not meet the technical requirements for inclusion floatation and temperature homogenization. With the optimal tunish configuration by using dam and weir, the RTD curves of two outlets at the same side tend to be the same, showing that the flow characteristics between the two outlets are almost uniform. With the optimal tunish configuration, the average percentage of dead zone volume is decreased to 10.9% from 58.2%.
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Key words:
- continuous casting /
- tundish /
- water modeling /
- configuration optimization
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