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Analysis of Hook Formation Mechanism in Ultra Low Carbon Steel Using CON1D Heat Flow - Solidification Model

机译:用CON1D热流 - 凝固模型分析超低碳钢中的钩形成机理

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Subsurface hook formation at the meniscus during the continuous casting of steel slabs is an important cause of surface defects, owing to their easy entrapment of mold flux and inclusion-laden gas bubbles. This work investigates the fundamentals of meniscus solidification and how hooks form by a combination of advanced computational models and plant measurements. From experimental results, the pitch deviation of oscillation mark depends on mold level fluctuation so the pitch deviation shows the stability of production conditions. The predicted shell thickness at upper end of the oscillation mark is related to the measured thickness of hook. During hook formation, the initial solidifying shell is partly melted by the molten steel. The extent of melting correlates with the location of the liquidus line near the meniscus for a given set of casting conditions. Thus, shallower hooks also correlate with a thinner initial solidifying shell. Deviations between these predicted hook characteristics and measurements correlate with level fluctuations, as indicated by variations in oscillation mark pitch. This work shows that hook shape is greatly affected by heat flux at the meniscus region.
机译:钢板连续铸造期间,弯腰处的地下钩形成是表面缺陷的重要原因,由于它们易于夹带模具助焊剂和包涵体气泡。这项工作调查了半月板凝固的基本原理,以及如何通过先进的计算模型和植物测量的组合来形成钩形。从实验结果来看,振荡标记的间距偏差取决于模具水平波动,因此间距偏差显示出生产条件的稳定性。振荡标记的上端的预测壳厚度与钩的测量厚度有关。在钩形形成期间,初始凝固壳部分由钢水熔化。熔化程度与液体线靠近弯月面的液相线的位置相关,用于给定的一组铸造条件。因此,较浅的钩子也与较薄的初始固化壳相关。这些预测钩子特性与测量之间的偏差与水平波动相关,如振荡标记间距的变化所示。这项工作表明,钩状物在弯月面区的热量通量大大影响。

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