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Influence of Exposure Temperature on Degradation of Magnesia Refractory by Steel Refining Slags

机译:暴露温度对钢精炼渣降解镁质耐火材料的影响

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Corrosion rate of refractory increases as the temperature increases and viscosity of slag decreases. The slag of low viscosity can more easily penetrate into the refractory materials and it causes the refractory degradation. Thus, the corrosion and/or erosion of refractory materials should be thoroughly evaluated under steelmaking conditions. In this study, the experiments were conducted using induction furnace. The steel (Fe-0.8C-0.2Si-0.4Mn-1.2Cr, wt%) and the CaO-Al2O3-8SiO(2)-5MgO-10CaF(2) (C/A = 1.9, wt%) slag were equilibrated in a magnesia refractory at 1520 to 1650 degrees C. As a results, the penetration depth of slag into the magnesia refractory increased with increasing exposure temperature, which originated from a decrease in viscosity of the slag. It also confirmed that MgO particles were detached from slag/refractory interface by increasing exposure temperature.
机译:随着温度的增加,炉渣的粘度降低,耐火的腐蚀速率增加。 低粘度的熔渣可以更容易地渗透到耐火材料中,并导致难治性降解。 因此,应在炼钢条件下彻底评估耐火材料的腐蚀和/或腐蚀。 在该研究中,使用感应炉进行实验。 钢(Fe-0.8C-0.2SI-0.4MN-1.2CR,WT%)和CaO-Al2O3-8SiO(2)-5MGO-10CAF(2)(C / A = 1.9,WT%)渣平均平衡 在1520至1650℃的氧化镁耐火材料中。作为结果,炉渣的渗透深度随着曝光温度的增加而增加,这起源于炉渣的粘度的降低。 它还证实,通过增加曝光温度从渣/耐火界面脱离MgO颗粒。

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