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Al2O3-based binders for corrosion resistance optimization of Al2O3-MgAl2O4 and Al2O3-MgO refractory

机译:用于优化Al2O3-MgAl2O4和Al2O3-MgO耐火材料的耐蚀性的Al2O3基粘合剂

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摘要

This work addresses the main aspects related to the use of alternative binders [hydratable (HA) or colloidal alumina (ColAlu)] in castables containing different spinel sources (pre-formed or in situ generated), in order to point out: (i) the features that control the corrosion behavior of these materials, and (ii) the key factors to better select a refractory composition. Thermodynamic calculations, corrosion cup-test and SEM analyses were carried out in order to evaluate the slag attack of the designed refractory compositions. According to the attained results, the alumina-based binders (HA or ColAlu) induced a more effective sintering process due to their high specific surface area, improving the physical properties and the binding level of the generated microstructure. The spinel grain size also played an important role in the corrosion behavior of these refractories, as the finer the particles, the greater their dissolution was into the molten liquid, leading to further precipitation of spinel in the solid liquid interface as a continuous and thick layer. Among the evaluated compositions and considering the presence of silica fume, the most suitable formulation with optimized corrosion resistance was the one with in situ spinel generation and HA as a binder. (C) 2015 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
机译:这项工作解决了与在含有不同尖晶石来源(预制或原位产生)的浇铸料中使用替代粘合剂[可水合(HA)或胶体氧化铝(ColAlu)]有关的主要方面,以便指出:(i)控制这些材料腐蚀行为的特征,以及(ii)更好地选择耐火成分的关键因素。进行了热力学计算,腐蚀杯试验和SEM分析,以评估设计耐火材料的熔渣侵蚀性能。根据获得的结果,基于氧化铝的粘合剂(HA或ColAlu)具有较高的比表面积,从而诱导了更有效的烧结过程,从而改善了所产生的微结构的物理性能和结合水平。尖晶石的晶粒尺寸在这些耐火材料的腐蚀行为中也起着重要作用,因为颗粒越细,它们在熔融液体中的溶解就越大,从而导致尖晶石在固态液体界面中进一步沉淀为连续且厚的层。在评估的组合物中,考虑到硅粉的存在,最合适的具有最佳耐腐蚀性的配方是原位生成尖晶石并以HA作为粘合剂的配方。 (C)2015 Elsevier Ltd和Techna Group S.r.l.版权所有。

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