Solidification regularity of a bloom during continuous casting
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摘要: 通過建立425mm×320mm連鑄大方坯二維凝固傳熱數學模型,模擬了凝固坯殼的長大過程,并通過窄面射釘實驗對數學模型進行了驗證,精確得到了任意位置處大方坯凝固坯殼的厚度分布情況及最終凝固終點的位置,發現經典的凝固平方根定律對于連鑄大方坯的凝殼長大進程不再適用.回歸寬面中心坯殼厚度與凝固時間平方根的關系式發現,結晶器彎月面至二冷區出口,近似為線性關系,符合平方根定律,二冷區出口至凝固終點,二者為非線性關系,不再符合平方根定律.Abstract: A two-dimensional mathematical model of solidification and heat transfer for a bloom with the cross section of 425 mm × 320 mm was established, which simulated the growth process of the solidified shell. The model was verified by nail-shooting experiments in the narrow side of the bloom. The solidified shell thickness distribution at any fixed location in the casting direction and the position of the solidification end point were got by the model. It is found that the traditional solidification square root law is not fit for describing the solidification process. A mathematical relationship was regressed between the solidified shell thickness and the square root of solidification time in the center of the wide side. The regression results show that it is approximately linear from the mold meniscus to the secondary cooling zone export, which satisfies the square root law. However, from the secondary cooling zone export to the solidification end point, it is a non-linear relationship, which no longer follows the square root law.
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Key words:
- continuous casting /
- blooms /
- solidification /
- heat transfer /
- mathematical models
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