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Studies of the decarburisation phenomena during preheating of submerged entry nozzles (SEN) in continuous casting processes

机译:连续铸造过程中浸没进入喷嘴(SEN)预热过程中脱碳现象的研究

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摘要

Decarburisation of the submerged entry nozzles (SEN) during the preheating process was investigated based on plant trials and thermodynamic modelling at three different steel plants. During the trials the preheating processes were mapped, the temperature profiles were registered and post-mortem studies of the SENs with scanning electron microscopy were performed. Typically, the glass/silicon powder will form a dense and protective layer inside the SEN when heated over 1100 degrees C. However, this study found that the temperature distribution inside the SEN did not always reach this critical temperature. Thus, decarburisation of the SEN was found at all steel plants. The overall results illustrate that the control of the preheating process needs to be improved at all steel plants. It is suggested that future research should be focused on the development of new coating materials to prevent decarburisation of the refractory base material, which would decrease the chances of clogging during casting.
机译:基于植物试验和三种不同钢铁厂的植物试验和热力学建模,研究了浸没过程中浸没过程中浸入过程中的脱碳脱碳。在试验期间,映射预热过程,进行温度型材,并进行了具有扫描电子显微镜的SEC的验尸研究。通常,玻璃/硅粉末在森中加热1100℃时,玻璃/硅粉末将形成密集和保护层。然而,该研究发现,森中的温度分布并不总是达到这种临界温度。因此,在所有钢铁厂都发现了森的脱铁化。总体结果表明,需要在所有钢铁厂改善预热过程的控制。有人建议,未来的研究应专注于新型涂料的开发,以防止耐火材料基材的脱碳,这将降低铸造过程中堵塞的机会。

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