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Prediction and control of subsurface hooks In continuous cast ultra-low-carbon steel slabs

机译:连铸超低碳钢坯表面钩的预测与控制

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Subsurface hook formation during initial solidification in the continuous casting mould degrades the quality of steel slabs owing to the associated entrapment of argon bubbles and non-metallic inclusions. To minimise hook depth and to improve slab quality, extensive plant experiments were performed and analysed to quantify the effect of casting parameters on hook characteristics using the no. 2-1 caster at POSCO Gwangyang Works, Korea. The results reveal that meniscus heat flux plays an important role in controlling hook characteristics. Hook depth correlates with oscillation mark depth, hook shell thickness, and hook length. Based on regression analysis, this paper proposes an equation to predict hook depth in ultra-low-carbon steels as a function of casting speed, superheat, oscillation frequency, surface level fluctuations, and mould flux properties. Use of this quantitative equation enables improved control of subsurface quality in the continuous casting of steel slabs.
机译:由于连带的氩气气泡和非金属夹杂物的夹带,在连续铸造模具中进行初始凝固时,地下钩的形成降低了钢坯的质量。为了最大程度地减小吊钩深度并改善板坯质量,使用No.1进行了广泛的工厂实验并进行了分析,以量化铸造参数对吊钩特性的影响。韩国浦项制铁光阳工厂2-1脚轮。结果表明,弯液面的热通量在控制吊钩特性方面起着重要作用。钩深与振荡标记深度,钩壳厚度和钩长相关。在回归分析的基础上,本文提出了一个方程来预测超低碳钢的钩深,该深浅随浇铸速度,过热,振荡频率,表面液位波动和结晶器熔剂性能而变化。使用该定量方程可以在钢坯连续铸造中改善对地下质量的控制。

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