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Design of Blast Furnace Crucibles by Means of the Nodal Wear Model

机译:基于节点磨损模型的高炉坩埚设计

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The Nfodal Wear Model (NWM) is used to explain and quantify the causes for the occurrence of different corrosion profiles observed in the hearth of blast furnaces during their campaign, and, as a consequence it is possible to use the NWM to define the most appropriate refractory materials for designing and constructing blast furnace crucibles. The NMW is based in three critical parameters which are the temperature at the interface between pig iron and the refractory lining (T_i), the temperature difference between such a point and at an adjacent node (△T_i), and the difference in temperature between the bulk liquid and that at the refractory-iron interface (T~∞- T_i). If the design and construction criteria rest upon reaching maximum durability of refractory linings, then, according to the NWM, all changes that minimize the values of T_i and △T_i, and maximize T~∞- T_i should be attempted.
机译:Nfodal磨损模型(NWM)用于解释和量化在高炉运动期间观察到的高炉炉膛中出现不同腐蚀曲线的原因,因此,可以使用NWM来定义最合适的腐蚀曲线。设计和建造高炉坩埚的耐火材料。 NMW基于三个关键参数,分别是生铁与耐火衬里之间的界面温度(T_i),该点与相邻节点之间的温度差(△T_i),以及两者之间的温差。块状液体和耐火铁界面处的液体(T〜∞-T_i)。如果设计和建造标准是在达到耐火衬里的最大耐久性之后,那么根据NWM,应尝试所有使T_i和△T_i值最小化并最大化T〜∞-T_i的变化。

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