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Thermal conductivity of titanium slags

机译:钛渣的导热系数

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摘要

In ilmenite smelting furnaces, a freeze lining of solidified slag is used to protect the furnace refractories against the aggressive titanium slag. Freeze lining thickness cannot be measured directly due to harshness of conditions inside the process, thus process modelling is required. Several parameters influence the thickness of the freeze-lining, one of them being thermal conductivity of the frozen slag. However, there is a lack of thermal conductivity values for high titanium slags -especially as a function of temperature. In this study, thermal conductivity of three titanium slag samples and an additional sample of freeze-lining was measured from room temperature to 1100/1400 degrees C with the laser flash analysis method. In addition, thermal expansion and microstructures of the samples were studied to provide an extensive understanding of how microstructure will affect thermal conductivity. The thermal conductivity of the slag samples was found to increase from 1.2 to a maximum of 2.4 W/(m K) when increasing temperature from room temperature to 1100 degrees C. An additional experiment at 1400 degrees C showed that the thermal conductivity increased further as the temperature increased. The freeze-lining sample behaves differently, with conductivity being the highest at room temperature, 2.2 W/(m K).
机译:在钛铁矿冶炼炉中,固化炉渣的冷冻衬里用于保护炉耐火材料免受腐蚀性的钛渣。由于该过程内部的条件的严苛性,冻结厚度不能直接测量,因此需要进行过程建模。几个参数影响冻结衬里的厚度,其中一个是冷冻渣的导热系数。然而,高钛渣缺乏导热性值 - 例如,作为温度的函数。在该研究中,用激光闪光分析方法从室温到1100/1400摄氏度测量三个钛渣样品的导热率和冻结衬里的另外的样品。此外,研究了样品的热膨胀和微观结构,以提供广泛的了解微观结构如何影响导热率。当从室温温度升高到1100℃时,发现炉渣样品的导热率从1.2〜最大值增加到2.4W /(m k)。在1400摄氏度下另外的实验表明导热率进一步增加温度增加。冻结样品的行为方式不同,电导率在室温下最高,2.2 W /(M K)。

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