State of the art of lightweight aggregates used in lightweight refractories for working lining of high-temperature furnaces

IF 2.5 2区 材料科学
Wei Zhang, Wen-yong Dai
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引用次数: 0

Abstract

Lightweight refractories for the working lining of high-temperature furnaces play an important role in the smelting of advanced steels and superalloys. To prepare lightweight refractories for the working lining of high-temperature furnaces, the synthesis of lightweight aggregates is the basis. Recently, the research on the synthesis of lightweight aggregates with high service temperature, low thermal conductivity, high strength, and good slag resistance has received widespread attention. The available literature on the synthesis of lightweight aggregates was summarized, including corundum, mullite, mullite–corundum, spinel, corundum–spinel, cordierite, cordierite–mullite, calcium hexaluminate, corundum–calcium hexaluminate, bauxite, magnesia, magnesia-based, and forsterite-based aggregates. Finally, the future development trend of lightweight aggregates was proposed.

Abstract Image

高温炉工作衬轻质耐火材料中使用的轻质骨料的技术现状
高温炉工作内衬用轻质耐火材料在先进钢材和超合金的冶炼过程中发挥着重要作用。要制备高温炉工作内衬用轻质耐火材料,轻质骨料的合成是基础。最近,关于合成具有高使用温度、低导热系数、高强度和良好抗渣性的轻质骨料的研究受到了广泛关注。综述了现有关于轻质骨料合成的文献,包括刚玉、莫来石、莫来石-刚玉、尖晶石、刚玉-尖晶石、堇青石、堇青石-莫来石、六铝酸钙、刚玉-六铝酸钙、铝矾土、菱镁矿、菱镁矿基和菱镁矿基骨料。最后,提出了轻质骨料的未来发展趋势。
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来源期刊
自引率
16.00%
发文量
161
审稿时长
2.8 months
期刊介绍: Publishes critically reviewed original research of archival significance Covers hydrometallurgy, pyrometallurgy, electrometallurgy, transport phenomena, process control, physical chemistry, solidification, mechanical working, solid state reactions, materials processing, and more Includes welding & joining, surface treatment, mathematical modeling, corrosion, wear and abrasion Journal of Iron and Steel Research International publishes original papers and occasional invited reviews on aspects of research and technology in the process metallurgy and metallic materials. Coverage emphasizes the relationships among the processing, structure and properties of metals, including advanced steel materials, superalloy, intermetallics, metallic functional materials, powder metallurgy, structural titanium alloy, composite steel materials, high entropy alloy, amorphous alloys, metallic nanomaterials, etc..
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