Lei Peng, Jun Yu, Huizhong Zhao, Han Zhang, Sun Ziheng
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引用次数: 0
摘要
摘要钢包永久层用高铝浇注料的散热问题是一个值得关注和解决的课题。建议在浇注料中使用球形多孔莫来石(固体废弃物)代替不规则的M70莫来石骨料,以降低导热系数,实现高强轻量化设计。讨论了浇注料中球形多孔莫来石含量对浇注料导热性、使用强度和抗热震性的影响。结果表明:球形多孔莫来石取代量增加,浇注料容重由2.68 g.cm−3下降到2.38 g.cm−3,表观孔隙度由15.5%上升到25.0%;热导率由1.174降至0.585 w m−1。K−1(1000°C),这可以归因于孔隙率的增加延长了传热路径。此外,由于球形莫来石的高强度和与基体的良好结合,使得浇注料的机械强度处于较高的强度水平,球形多孔莫来石完全取代m70莫来石的断裂模量为18 MPa,冷压强度为76 MPa。含球形多孔莫来石的半轻质低导热浇注料在钢包永久层中具有很大的应用潜力。关键词:球形多孔莫来石;70;莫来石
Preliminary Investigation on the Application of a Semi-Lightweight Mullite Spherical Solid Waste Material in Ladle Permanent Layer
AbstractThe heat dissipation of high alumina castables for ladle permanent layer is a topic worthy of attention and solution. It is proposed to use spherical porous mullite (a solid waste) instead of irregular M70 mullite aggregate in castable to reduce the thermal conductivity and realize a high-strength and lightweight design. The effect of spherical porous mullite content in castables on thermal conductivity, service strength and thermal shock resistance were discussed. The results demonstrated that the substitution amount of spherical porous mullite increased, the bulk densities of the castables dropped from 2.68 to 2.38 g.cm−3, the apparent porosity rose from 15.5 to 25.0%. The thermal conductivities reduced from 1.174 to 0.585 W.m−1.K−1 (1000°C), which can be ascribed to the increased porosity extending the heat transfer path. Furthermore, owing to the high strength of spherical mullite and its excellent bonding with matrix, the mechanical strength of castable was at a high strength level, with modulus of rupture of 18 M Pa and cold crushing strength of 76 MPa at the spherical porous mullite completely substituting M 70 mullite. The semi-lightweight and low thermal conductivity castable containing spherical porous mullite show great application potential in the ladle permanent layer.Keywords: Spherical porous mulliteM70 mulliteLadleInsulating refractory castables
期刊介绍:
Transactions of the Indian Ceramic Society is a quarterly Journal devoted to current scientific research, technology and industry-related news on glass and ceramics. The Journal covers subjects such as the chemical, mechanical, optical, electronic and spectroscopic properties of glass and ceramics, and characterization of materials belonging to this family.
The Editor invites original research papers, topical reviews, opinions and achievements, as well as industry profiles for publication. The contributions should be accompanied by abstracts, keywords and other details, as outlined in the Instructions for Authors section. News, views and other comments on activities of specific industries and organizations, and also analyses of industrial scenarios are also welcome.