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Comparative analysis between properties and microstructures of geopolymeric concrete and portland concrete

机译:地聚混凝土与硅酸盐混凝土性能与微观结构的比较分析。

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High energy consumption and elevated emission of carbon dioxide are relevant problems of the Portland cement industry related to environmental issues. With the purpose of reducing such problems, geopolymerics cements constitute a new class of materials used as mineral binder capable to replace Portland cement owing to technical and environmental advantages. These advantages, particularly the “ecologically friendly” aspect, have been questioned and are currently the subject of research works. As possible applications, geopolymeric cements are known to rapidly develop mechanical strength with aging while maintaining dimensional stability. By also considering the excellent adherence to aggregates make geopolymer cements potential materials for civil construction. Indeed, they are currently being investigated for the production of geopolymeric concrete as possible substitute for Portland cement concrete. In this work a combined comparison between mechanical, thermal and microstructure characteristics of concretes made with geopolymeric and high performance Portland cements is presented. Results of compressive strength, X-ray diffraction (XRD), scanning electron microscopy (SEM) and thermal analysis (DSC/TGA) are discussed, in order to gather information for a better understanding of the relation between properties and microstructure of both geopolymeric and Portland cements in the performance of concretes.
机译:高能耗和高二氧化碳排放是波特兰水泥工业与环境问题相关的问题。为了减少此类问题,由于技术和环境优势,地聚合物水泥构成了新型的矿物粘合剂,可替代波特兰水泥。这些优势,特别是“生态友好”方面受到了质疑,目前是研究工作的主题。作为可能的应用,已知地聚水泥在保持尺寸稳定性的同时会随着时效迅速发展出机械强度。通过考虑对骨料的优异附着力,使地质聚合物水泥成为民用建筑的潜在材料。实际上,目前正在对它们进行研究以生产地聚合物,以替代波特兰水泥混凝土。在这项工作中,提出了用地聚和高性能波特兰水泥制成的混凝土的机械,热和微观结构特征的综合比较。讨论了抗压强度,X射线衍射(XRD),扫描电子显微镜(SEM)和热分析(DSC / TGA)的结果,目的是收集信息以更好地理解地质聚合物和聚合物的性能与微观结构之间的关系。波特兰水泥在混凝土中的性能。

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