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Molten Steel Level Measurement Based on Temperature Attenuation Characteristic

机译:基于温度衰减特性的钢水液位测量

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This paper proposes a molten steel level measuring method in a tundish. This method is based on the temperature attenuation characteristic of the temperature tube. Our previous work focused on the temperature distribution of the temperature tube which can be used for molten steel level measurement. In some continuous casters, sticky slag adheres to the tube, thus, blocking the temperature information on the tube. To avoid this problem of lacking true temperature, we analyzed the principle of adhesion and conclude that the adhesive slag thickness of the tube is influenced by whether that part of the tube contacts the slag or the molten steel prior to being lifted. Consequently, for detecting the adhesive slag thickness online with available pyrometer, a heat transfer model is established. Through analysis of the model, it was revealed that the thickness of the adhesive slag remarkably influences the measurable maximum curvature time of the temperature attenuation. In addition, this maximum curvature time is insensitive to other irrelevant factors such as initial temperature and ambient temperature. Therefore, the maximum curvature time of the temperature attenuation of the adhesive slag indirectly indicates the molten steel level. Finally, the experiments prove the feasibility and the sound accuracy of this method with the maximal error being 3 mm. This method is not only suited for the molten steel level measurement, but also applicable to other non-destructive measurement of coating layer thickness.
机译:本文提出了一种中间包钢水液位测量方法。该方法基于温度管的温度衰减特性。我们以前的工作集中在可用于钢水液位测量的温度管的温度分布上。在某些连铸机中,粘渣附着在管子上,从而阻塞了管子上的温度信息。为避免缺乏真实温度的问题,我们分析了粘附原理,得出结论,管的粘附渣层厚度受提起之前管的那部分接触渣或钢水的影响。因此,为了使用可用的高温计在线检测胶渣厚度,建立了一个传热模型。通过模型分析,发现粘渣的厚度显着影响了温度衰减的可测最大曲率时间。此外,此最大曲率时间对其他无关因素(例如初始温度和环境温度)不敏感。因此,胶渣温度衰减的最大曲率时间间接表示钢水液位。最后,实验证明了该方法的可行性和最大声音误差为3 mm时的声音精度。该方法不仅适用于钢水液位测量,还适用于涂层厚度的其他无损测量。

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