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Slag conditioning effects on MgO-C refractory corrosion performance

机译:炉渣调节对MgO-C耐火材料腐蚀性能的影响

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摘要

Slag conditioning practice provides important benefits to the stechnaking processes including ladle refractory life improvement, lower flux cost/additions, better control of metal recovery, among others. Furthermore, with the advent of thermodynamic and mass balance calculations it is possible to predict the slag saturation and define the most suitable conditioner (oxide components) that should be added during the operational process. Thus, the aim of this work was to analyze the interaction of industrial slags and a MgO-C refractory composition by thermodynamic simulations [FactSagc~(TM)]. Based on the attained results, a conditioned slag was designed and corrosion tests in the laboratory were carried out (cup-tests and induction furnace), for two MgO-C materials containing distinct magnesia sources. According to the calculated slag penetration area and refractory corrosion rate, a remarkable enhancement of the MgO-C bricks wear resistance was observed when such materials were placed in contact with the conditioned molten slag. Therefore, proper slag engineering can be a suitable replacement for purchased synthetic slags and the conditioning practices can directly improve refractory life, with more competitive costs for both, refractory producers and end-users.
机译:矿渣调节实践为高炉工艺提供了重要的好处,包括提高钢包耐火材料寿命,降低焊剂成本/添加量,更好地控制金属回收率等。此外,随着热力学和质量平衡计算的出现,可以预测炉渣饱和度并定义在操作过程中应添加的最合适的调节剂(氧化物成分)。因此,这项工作的目的是通过热力学模拟[FactSagcTM]分析工业炉渣与MgO-C耐火成分的相互作用。根据获得的结果,设计了处理后的炉渣,并在实验室中对两种包含不同氧化镁源的MgO-C材料进行了腐蚀测试(杯试验和感应炉)。根据计算出的熔渣渗透面积和耐火腐蚀速率,当将这种材料与经调节的熔渣接触时,可以观察到MgO-C砖耐磨性的显着提高。因此,适当的炉渣工程可以代替购买的合成炉渣,并且调节实践可以直接改善耐火材料的使用寿命,同时对耐火材料生产商和最终用户都具有更高的竞争力。

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