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Phase composition of alumina-mullite-zirconia refractory materials

机译:氧化铝-莫来石-氧化锆耐火材料的相组成

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摘要

Refractories in the Al2O3-SiO2-ZrO2 system are widely used in many applications, for ceramic rollers in particular, and are characterized by high mechanical strength, excellent thermal shock resistance, resistance to corrosion by alkaline compounds and low creep at high temperature. Their performances greatly depend on the amount and chemical composition of crystalline and glassy phases, which were investigated by quantitative XRPD (RIR-Rietveld) and XRF in order to assess the effect of various Al2O3/SiO2 ratios of starting batches and different alumina particle size distributions. Refractories consist of mullite, corundum, zirconia polymorphs and a vitreous phase in largely variable amounts. The mullite percentage, unit cell parameters and composition vary with sintering temperature, being mostly influenced by the Al2O3/SiO2 ratio of the batch. Its orthorhombic unit cell increased its volume from 1400?C to 1500?C, while its stoichiometry became more aluminous. The corundum stability during firing is strongly affected by the Al2O3/SiO2 ratio, but not by the particle size distribution of alumina raw materials. Zirconia raw materials are involved in the high temperature reactions and about one third of the available ZrO2 is dissolved in the glassy phase, ensuring excellent resistance to alkali corrosion, mainly depending on the fraction of coarse alumina. The phase composition of the vitreous phase increased with sintering temperature, being over 20% when the fractions of coarse alumina in the starting batch are between 0.2 and 0.5
机译:Al2O3-SiO2-ZrO2系统中的耐火材料被广泛用于许多应用中,尤其是陶瓷辊,其特点是机械强度高,耐热冲击性优异,耐碱性化合物腐蚀以及在高温下的蠕变低。它们的性能很大程度上取决于结晶相和玻璃态相的数量和化学组成,通过定量XRPD(RIR-Rietveld)和XRF对其进行了研究,以评估起始批料中各种Al2O3 / SiO2比和不同氧化铝粒度分布的影响。 。耐火材料由莫来石,刚玉,氧化锆多晶型物和玻璃相组成,其变化量很大。莫来石百分率,晶胞参数和组成随烧结温度而变化,主要受批料中Al2O3 / SiO2比的影响。它的斜方晶胞的体积从1400°C增加到1500°C,而化学计量的铝含量更高。焙烧期间的刚玉稳定性受Al2O3 / SiO2比的强烈影响,但不受氧化铝原料粒度分布的影响。氧化锆原料参与高温反应,大约三分之一的可用ZrO2溶解在玻璃相中,从而确保出色的耐碱腐蚀性能,这主要取决于粗氧化铝的比例。玻璃相的相组成随烧结温度的增加而增加,当起始批料中粗氧化铝的比例在0.2和0.5之间时,玻璃相的相组成超过20%。

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