首页> 外文会议>Association for Iron amp; Steel Technology(AIST)/The Minerals, Metals amp; Materials Society(TMS) Proceedings vol.2; 20040926-29; New Orleans,LA(US) >Analysis of Hook Formation Mechanism in Ultra Low Carbon Steel using CON1D Heat Flow -Solidification Model
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Analysis of Hook Formation Mechanism in Ultra Low Carbon Steel using CON1D Heat Flow -Solidification Model

机译:利用CON1D热流-固溶模型分析超低碳钢的钩形成机理

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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:连续浇铸钢坯时在弯月面的地下钩形成是表面缺陷的重要原因,因为它们容易滞留脱模剂和带有夹杂物的气泡。这项工作研究了弯液面凝固的基本原理,以及结合了先进的计算模型和工厂测量结果如何形成弯钩。从实验结果来看,振荡痕迹的螺距偏差取决于模具高度的波动,因此螺距偏差表示生产条件的稳定性。振动标记上端的预计外壳厚度与所测量的弯钩厚度有关。在吊钩形成过程中,最初的凝固壳被钢水部分熔化。对于给定的铸造条件,熔化程度与弯液面附近液相线的位置有关。因此,较浅的钩也与较薄的初始凝固壳有关。这些预测的弯钩特性和测量值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,弯月形区域的热通量极大地影响了钩形。

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