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Corrosion resistance of alumina-magnesia castable to slag in steel ladle lining

机译:钢包衬里氧化铝镁铸渣对渣的耐蚀性

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The corrosion resistance of alumina-magnesia castable to a basic slag was evaluated to find the highly-resistive castable composition for steel processing. Stable solid phases were CA6, alumina and spinel after firing of the castable of Al2O3–MgO–CaO–SiO2 system. The slag corrosion was simulated thermodynamically for CA6, alumina, spinel and castables. The solubility of each oxide component is expected in the order of MgAl2O4 > CA6 > Al2O3 at 1600°C because of the formation of CA2 on CA6 and the formation of CA2 and CA6 on alumina, suggesting the protection of castable from slag. However, CA2 and CA6 disappear at 1800°C and the solubility changes in the order of CA6 > Al2O3 > MgAl2O4. Although the protection of castable by CA6 is also expected, the CA6 disappears at a large amount of slag and a high temperature. The solubility of castable decreases with increasing MgO/CaO ratio owing to spinel formation. The practical immersion test demonstrated the high corrosion resistance of high MgO/CaO castable against slag, exhibiting the importance of spinel formation.
机译:评价可浇铸成碱性炉渣的氧化铝-镁的耐腐蚀性,以找到用于钢加工的高电阻可浇铸组合物。 Al 2 O 3 –MgO–CaO–SiO 2 体系的浇铸料烧成后,稳定的固相为CA6,氧化铝和尖晶石。对CA6,氧化铝,尖晶石和浇铸料的熔渣腐蚀进行了热力学模拟。预计每种氧化物组分的溶解度依次为MgAl 2 O 4 Al 2 O 3 在1600°C时>,因为CA6上形成了CA2以及氧化铝上形成了CA2和CA6,这表明保护了浇铸料不受炉渣的影响。但是,CA2和CA6在1800℃时消失,溶解度按照CA6> Al 2 O 3 2 O < sub> 4 。尽管也期望用CA6保护浇铸料,但CA6在大量炉渣和高温下会消失。由于尖晶石的形成,浇铸料的溶解度随MgO / CaO比的增加而降低。实际的浸没测试表明,高MgO / CaO浇铸料对炉渣具有很高的耐腐蚀性,显示出尖晶石形成的重要性。

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