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Kinetics of the formation of protective slag layers on MgO-MgAl2O4-C ladle bricks determined in laboratory

机译:在实验室中确定的MgO-MgAl2O4-C钢包砖上形成保护渣层的动力学

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摘要

Carbon-bonded magnesia and magnesia-alumina bricks are the state of the art lining materials of the sidewalls and the bottom of steel ladles. Industrial trial tests revealed, that a new generation of MgO-MgAl2O4-C bricks, where pre-reacted spinel is added in form of a new calcium magnesium aluminate (CMA) raw material, exhibit a longer service life caused by an enhanced corrosion resistance due to the formation of a protective slag layer. In terms of this work, laboratory corrosion tests have been performed in order to mimic the protective slag layer formation and to study the kinetics of the formation. It has been found that the formation highly depends on the amount of iron present in the melt, which leads to the precipitation of the brownmillerite-phase. Furthermore, the study was extended to force the formation of protective slag layers of different composition which are reliable at higher temperatures and wider temperature ranges by targeted adaption of the brick composition. Cup tests showed that there is a potential to manipulate the composition of a protective slag layer by targeted adaption of the brick composition. Especially MgO, Al2O3, FexOy and SiO2 from the brick or slag enrich at the slag/refractory-interface.
机译:碳键合氧化镁和氧化镁砖是侧壁和钢材底部的艺术衬里材料的状态。揭示了工业试验,即新一代MgO-MgAl2O4-C砖,其中预先反应的尖晶石以新的铝酸铝(CMA)原料的形式添加,表现出由增强的耐腐蚀性造成的使用寿命形成保护渣层。就这项工作而言,已经进行了实验室腐蚀试验,以模仿保护渣层形成并研究形成的动力学。已经发现,形成高度取决于熔体中存在的铁量,这导致棕色镁阶段的沉淀。此外,该研究延伸以迫使不同组合物的保护性炉渣层的形成,其在较高温度下可靠,通过砖组成的靶向适应较宽的温度范围。杯试验表明,通过砖组成的靶向适应,存在有可能通过靶向适应操纵保护渣层的组成。特别是MgO,Al2O3,Fexoy和SiO2从砖或渣中丰富的炉渣/难治性接口。

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