A comparative study on microstructures and slag resistance of Al2O3–MgO castables with dense and lightweight aggregates

IF 1.8 4区 材料科学 Q2 MATERIALS SCIENCE, CERAMICS
Qingjie Chen, Rongchang Chen, Wandi Zhang, Yang He, Jidong Chen, Nan Li
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Abstract

Lightweight Al2O3–MgO refractory castables were prepared using microporous corundum–spinel aggregate, which was fabricated using the Kirkendall effect. The physical properties, microstructure, thermal conductivity, and slag resistance of the castables were analyzed using X-ray diffractometry (XRD), scanning electron microscopy (SEM), and thermodynamic calculations. A comparative analysis was carried out between these findings and the corresponding ones for dense aggregates of Al2O3–MgO castables. Compared with dense aggregates, the reaction between microporous aggregate and matrix results in a smaller pore size in lightweight aggregate castables. The less soluble spinel in the microporous aggregate contributes to the reduced solubility of lightweight castables in slag, thus enhancing their corrosion resistance. Porous aggregates could absorb more Fe2+/Mn2+ ions from slag than dense aggregates, resulting in an increased viscosity of the slag. This, combined with the small pore size of the matrix, contributes to the superior penetration resistance of the lightweight aggregates castable compared with the dense aggregates castable. Consequently, lightweight aggregate castables exhibit superior corrosion and penetration resistance compared with dense aggregate castables. In contrast to dense aggregates castables, lightweight aggregates castables exhibit a 16.3% reduction in bulk density, an 8.2% decrease in thermal conductivity, and a notable enhancement in slag corrosion resistance.

Al2O3-MgO轻集料与重集料的显微组织及抗渣性能比较研究
采用Kirkendall效应制备了微孔刚玉尖晶石骨料,制备了轻质Al2O3-MgO耐火浇注料。采用x射线衍射仪(XRD)、扫描电镜(SEM)和热力学计算对浇注料的物理性能、微观结构、导热性和抗渣性进行了分析。将这些结果与Al2O3-MgO浇注料致密集料的相应结果进行了比较分析。与致密骨料相比,微孔骨料与基体的反应使得轻骨料浇注料的孔隙尺寸更小。微孔骨料中难溶尖晶石的存在降低了轻浇注料在矿渣中的溶解度,从而提高了轻浇注料的耐蚀性。多孔骨料比致密骨料能从渣中吸收更多的Fe2+/Mn2+离子,从而提高渣的粘度。这一点,再加上基质的小孔径,使得轻质集料浇注料比致密集料浇注料具有更强的抗渗透能力。因此,与致密集料浇注料相比,轻质集料浇注料具有更好的抗腐蚀和抗渗透性能。与致密骨料浇注料相比,轻质骨料浇注料的体积密度降低了16.3%,导热系数降低了8.2%,抗渣腐蚀性能显著提高。
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来源期刊
International Journal of Applied Ceramic Technology
International Journal of Applied Ceramic Technology 工程技术-材料科学:硅酸盐
CiteScore
3.90
自引率
9.50%
发文量
280
审稿时长
4.5 months
期刊介绍: The International Journal of Applied Ceramic Technology publishes cutting edge applied research and development work focused on commercialization of engineered ceramics, products and processes. The publication also explores the barriers to commercialization, design and testing, environmental health issues, international standardization activities, databases, and cost models. Designed to get high quality information to end-users quickly, the peer process is led by an editorial board of experts from industry, government, and universities. Each issue focuses on a high-interest, high-impact topic plus includes a range of papers detailing applications of ceramics. Papers on all aspects of applied ceramics are welcome including those in the following areas: Nanotechnology applications; Ceramic Armor; Ceramic and Technology for Energy Applications (e.g., Fuel Cells, Batteries, Solar, Thermoelectric, and HT Superconductors); Ceramic Matrix Composites; Functional Materials; Thermal and Environmental Barrier Coatings; Bioceramic Applications; Green Manufacturing; Ceramic Processing; Glass Technology; Fiber optics; Ceramics in Environmental Applications; Ceramics in Electronic, Photonic and Magnetic Applications;
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