Influence of silica and magnesia on in situ spinel formation in alumina–magnesia castable

P. Nandi, A. Garg, R. Singh, B. Chattoraj
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引用次数: 5

Abstract

Abstract The present study was carried out on the matrix composition of spinel forming high alumina castable to determine the effects of silica, magnesia particle size and temperature on spinel formation, the alumina content of the spinel formed, and associated physical characteristics at high temperature. It was found that an increase in silica content and use of finer magnesia helps to increase spinel formation. However to increase the alumina content of the spinel, increased temperature and magnesia particle size were more effective than an increased amount of silica. Furthermore the permanent linear change and porosity of the matrix are adversely affected when the amount of silica is increased or when magnesia is added in the form of fines. These findings suggest that medium and fine magnesia particles and an optimum amount of silica in the matrix composition of a spinel forming castable are necessary to obtain a matrix with increased alumina rich spinel content with controlled permanent linear change and porosity when exposed to high temperature during service.
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二氧化硅和氧化镁对氧化铝-氧化镁浇注料中尖晶石原位形成的影响
摘要 本研究针对尖晶石成型高铝浇注料的基体成分进行,以确定二氧化硅、氧化镁粒度和温度对尖晶石形成、所形成尖晶石的氧化铝含量以及高温下相关物理特性的影响。研究发现,增加二氧化硅含量和使用更细的氧化镁有助于增加尖晶石的形成。然而,要增加尖晶石的氧化铝含量,提高温度和氧化镁粒度比增加二氧化硅含量更有效。此外,当二氧化硅用量增加或以细粒形式添加氧化镁时,基质的永久线性变化和孔隙率也会受到不利影响。这些研究结果表明,在尖晶石成型浇注料的基体成分中加入中等和细小的氧化镁颗粒以及最佳量的二氧化硅,对于获得富含氧化铝的尖晶石含量增加的基体是必要的,而且在使用过程中暴露在高温下时,其永久线性变化和孔隙率也是可控的。
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