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DEVELOPMENT OF RELIABLE VISCOSITY MODEL FOR IRON SILICATE SLAGS

机译:铁硅酸盐渣可靠粘度模型的开发

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Viscosity is one of the important physiochemical properties of metallurgical slags which is important for slag tapping, metal loss in slag, freeze lining and fluid dynamics. High temperature viscosity measurements are time- and cost-consuming and the number of experiments is limited. Viscosity model is an effective way to predict the viscosities of the complex slags at high temperature. However, a reliable viscosity model can only be developed on the base of accurate experimental data. A unique high-temperature viscosity measurement apparatus developed at The University of Queensland enabled accurate viscosity data to be measured for the "FeO"-SiO_2-CaO-MgO-Al_2O_3 system in equilibrium with Fe. An accurate viscosity model has been developed based on Eyring's theory and extensive viscosity measurements. The viscosities of copper smelting, converting and cleaning slags over a wide range of compositions and temperatures can be predicted and applied in the process control.
机译:粘度是冶金渣的重要理化性质之一,对于炉渣,炉渣,冻结衬里和流体动力学是重要的。高温粘度测量是时间和成本耗费,实验数量有限。粘度模型是预测高温下复合渣的粘度的有效方法。然而,只能在准确的实验数据的基础上开发可靠的粘度模型。在昆士兰大学开发的独特的高温粘度测量装置,使得能够测量精确的粘度数据,以测量与Fe平衡的“FEO”-SiO_2-CAO-MGO-AL_2O_3系统测量。基于注销的理论和广泛的粘度测量,开发了一种精确的粘度模型。在宽范围的组合物和温度下,可以预测铜冶炼,转换和清洁矿渣的粘度,并施加在过程控制中。

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