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Development and Characterization of Glass-Ceramics from Combinations of Slag Fly Ash and Glass Cullet without Adding Nucleating Agents

机译:不添加成核剂的矿渣粉煤灰和碎玻璃的组合对微晶玻璃的开发和表征

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摘要

Developments in the field of materials science are contributing to providing solutions for the recycling of industrial residues to develop new materials. Such approaches generate new products and provide optimal alternatives to the final disposal of different types of industrial wastes. This research focused on identifying and characterizing slag, fly ash, and glass cullet from the Boyacá region in Colombia as raw materials for producing glass-ceramics, with the innovative aspect of the use of these three residues without the addition of nucleating agents to produce the glass-ceramics. To characterize the starting materials, X-ray diffraction (XRD), X-ray fluorescence (XRF), and Scanning Electron Microscopy (SEM) techniques were used. The results were used to evaluate the best conditions to produce mixtures of the three waste components and to determine the specific compositions of glass-ceramics to achieve products with attractive technical properties for potential industrial applications. The proposed mixtures were based on three compositions: Mixture 1, 2, and 3. The materials were obtained through thermal treatment at 1200 °C in a tubular furnace in accordance with the results of a comprehensive characterization using thermal analysis. The microstructure, thermal stability, and structural characteristics of the samples were examined through SEM, differential thermal analysis (DTA), and XRD analyses, which showed that the main crystalline phases were diopside and anorthite, with a small amount of enstatite and gehlenite. The obtained glass-ceramics showed properties of technical significance for structural applications.
机译:材料科学领域的发展为提供回收工业残渣以开发新材料的解决方案做出了贡献。这种方法产生了新产品,并为最终处置不同类型的工业废物提供了最佳的替代方案。这项研究的重点是鉴定和表征哥伦比亚博亚卡地区的炉渣,粉煤灰和玻璃碎屑,作为生产玻璃陶瓷的原料,其创新之处在于在不添加成核剂的情况下使用这三种残留物来生产玻璃陶瓷。玻璃陶瓷。为了表征原材料,使用了X射线衍射(XRD),X射线荧光(XRF)和扫描电子显微镜(SEM)技术。结果用于评估生产三种废料混合物的最佳条件,并确定玻璃陶瓷的特定组成,以获得具有潜在工业应用吸引力技术性能的产品。所提出的混合物基于三种成分:混合物1、2和3。根据使用热分析的综合表征结果,通过在管式炉中于1200°C的热处理获得了材料。通过SEM,差热分析(​​DTA)和XRD分析对样品的微观结构,热稳定性和结构特征进行了检查,结果表明,主要结晶相为透辉石和钙长石,少量的顽辉石和钠钙石。所获得的玻璃陶瓷显示出对结构应用具有技术意义的性质。

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