Corrosion resistance of MgO–C refractory to smelting reduction slag containing titania

Qingcai Liu, Dengfu Chen, Yuan Xu, J. Newkirk
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引用次数: 13

Abstract

Abstract Interactions between smelting reduction slags containing titania (0·2-20 wt-%TiO2) and MgO-C refractories have been investigated by stationary immersion and rotary immersion at temperatures of 1773-1923 K. The relationship between the concentration of TiO2 in the slag and the corrosion rate of the refractories, the effects of slag basicity (CaO/SiO2), and the effect of the temperature of the molten bath on the corrosion rate were examined. Increasing the TiO2 concentration in the slag caused an increase in the corrosion rate of the MgO-C refractories. The corrosion rate also increased when the temperature was increased. Increasing the basicity of the acid slag decreased the corrosion rate, but this effect was not evident when the basicity of slag exceeded 1·0. The corrosion mechanism of MgO-C refractories in smelting reduction melts containing titania involves the oxidation of graphitic carbon by TiO2 and the formation of a deterioration layer containing Ti and TiC, together with the reaction of matrix MgO with slag to form MgAl2O4, MgCaSiO4, and MgSiO3.
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MgO-C耐火材料对含钛冶炼还原渣的耐蚀性
在1773 ~ 1923 K的温度下,采用固定浸渍和旋转浸渍的方法研究了含TiO2(0·2 ~ 20 wt-%TiO2)的冶炼还原渣与MgO-C耐火材料之间的相互作用。考察了炉渣中TiO2浓度与耐火材料腐蚀速率的关系、炉渣碱度(CaO/SiO2)的影响以及熔浴温度对腐蚀速率的影响。随着炉渣中TiO2浓度的增加,MgO-C耐火材料的腐蚀速率加快。随着温度的升高,腐蚀速率也随之增加。提高酸性渣的碱度会降低腐蚀速率,但当碱度超过1·0时,这种作用不明显。MgO- c耐火材料在含钛熔炼还原熔体中的腐蚀机理是TiO2氧化石墨碳,形成含Ti和TiC的变质层,基体MgO与炉渣反应生成MgAl2O4、MgCaSiO4和MgSiO3。
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