Tecnologias De Tijolos Alumina-magnesia Para Apenlas De Aço Parte I, Desenvolvimento De Tijolos

Associacao Brasileira de Metalurgia,  Materiais e Mineracao
Masakazu Iida
Organization:
Associacao Brasileira de Metalurgia, Materiais e Mineracao
Pages:
11
File Size:
1452 KB
Publication Date:
Oct 30, 2017

Abstract

In this article, technologies of unburned Al2O3-MgO (UAM) refractories are demonstrated in terms of microstructure evolution. During operation, Mg2+ diffuses from MgO to Al2O3 through the liquid phase to form spinel (MgAl2O4) network. Molten slag tends to penetrate along the voids in the spinel network structure and spinel dissolves in the penetrated slag. Therefore, maintaining a high degree of spinel saturation in the penetrated molten slag is important. In order to achieve the condition described above, suppression of overall mass transfer through penetrated slag is effective. This is achievable by evolution of complicated spinel network structure with small pore diameter, which increases the flow resistance of molten slag. Thus, optimization of refractory composition and fabricating conditions, with the aim of creating on improved spinel network, is essential. The effectiveness of spinel network improvement was validated by commercial applications. According to the investigation of UAM brick after use, further densification due to heating under restrained conditions was recognized. Hence, it was concluded that the evolution of the spinel network structure in UAM refractories is essential technology needed to improve durability.
Citation

APA: Masakazu Iida  (2017)  Tecnologias De Tijolos Alumina-magnesia Para Apenlas De Aço Parte I, Desenvolvimento De Tijolos

MLA: Masakazu Iida Tecnologias De Tijolos Alumina-magnesia Para Apenlas De Aço Parte I, Desenvolvimento De Tijolos. Associacao Brasileira de Metalurgia, Materiais e Mineracao, 2017.

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