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Investigations of Liquid Steel Viscosity and Its Impact as the Initial Parameter on Modeling of the Steel Flow through the Tundish

机译:液体钢粘度的研究及其作为钢流过中间钢流量建模的初始参数的影响

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摘要

The paper presents research carried out to experimentally determine the dynamic viscosity of selected iron solutions. A high temperature rheometer with an air bearing was used for the tests, and ANSYS Fluent commercial software was used for numerical simulations. The experimental results obtained are, on average, lower by half than the values of the dynamic viscosity coefficient of liquid steel adopted during fluid flow modeling. Numerical simulations were carried out, taking into account the viscosity standard adopted for most numerical calculations and the average value of the obtained experimental dynamic viscosity of the analyzed iron solutions. Both qualitative and quantitative analysis showed differences in the flow structure of liquid steel in the tundish, in particular in the predicted values and the velocity profile distribution. However, these differences are not significant. In addition, the work analyzed two different rheological models—including one of our own—to describe the dynamic viscosity of liquid steel, so that in the future, the experimental stage could be replaced by calculating the value of the dynamic viscosity coefficient of liquid steel using one equation. The results obtained support the use of the author’s rheological model for the above; however, this model still needs to be refined and extended to a wide range of alloying elements, mainly the extension of the carbon range.
机译:本文提出了通过实验确定所选铁溶液的动态粘度的研究。具有空气轴承的高温流变仪用于测试,并且使用ANSYS流畅的商业软件用于数值模拟。所获得的实验结果平均,在流体流动建模期间采用的液体钢的动态粘度系数的值下降。进行了数值模拟,考虑到大多数数值计算的粘度标准和分析的铁溶液的所得实验动态粘度的平均值。定性和定量分析既有定性和定量分析都显示出中间包中液钢流动结构的差异,特别是在预测值和速度曲线分布中。但是,这些差异并不重要。此外,该工作分析了两种不同的流变模型 - 包括我们自己的一种 - 描述液钢的动态粘度,因此在将来,可以通过计算液钢动态粘度系数的值来替换实验阶段使用一个等式。结果支持上述作者流变模式的使用;但是,这种型号仍然需要精制和扩展到各种合金元素,主要是累积碳范围的延伸。

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