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首页> 外文期刊>Scandinavian Journal of Metallurgy >Corrosion mechanism and kinetic behaviour of MgO-C refractory material in contact with CaO-Al_2O_3-SiO_2-MgO slag
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Corrosion mechanism and kinetic behaviour of MgO-C refractory material in contact with CaO-Al_2O_3-SiO_2-MgO slag

机译:MgO-C耐火材料与CaO-Al_2O_3-SiO_2-MgO炉渣接触的腐蚀机理和动力学行为

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摘要

The rate of dissolution of solid MgO-C into liquid CaO-Al_2O_3-SiO_2-MgO slag at different temperatures was studied under conditions of forced convection by rotating cylindrical refractory specimens in a stationary crucible containing molten slag. The corrosion rate was calculated from the change in diameter of the cylindrical refractory specimens. The specimens were rotated for 15-120 min at a speed of 100-400 rpm in the molten slag. The rate of corrosion was found to increase with an increase in temperature and rod rotation speed, and to decrease when the slag was nearly saturated with MgO. The experimental results support the assumption that the diffusion of magnesium oxide through the slag-phase boundary layer controls the corrosion process. The corrosion mechanism seems to be the dissolution of refractory material into the slag followed by penetration of pores and grain boundaries and dispersion of the grains into the slag.
机译:在强制对流条件下,通过在含有熔融矿渣的固定坩埚中旋转圆柱状耐火材料,研究了在不同温度下固态MgO-C在液态CaO-Al_2O_3-SiO_2-MgO钢渣中的溶解速率。根据圆柱状耐火样品直径的变化计算腐蚀速率。将样品在熔融炉渣中以100-400 rpm的速度旋转15-120分钟。发现腐蚀速率随着温度和棒转速的增加而增加,而当炉渣几乎被MgO饱和时腐蚀速率降低。实验结果支持以下假设:氧化镁通过渣相边界层的扩散控制腐蚀过程。腐蚀机理似乎是耐火材料溶解到炉渣中,然后渗透孔隙和晶界,并使晶粒分散到炉渣中。

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