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Influence of OPC replacement and manufacturing procedures on the properties of self-cured geopolymer

机译:OPC更换和制造程序对自固化地质聚合物性能的影响

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摘要

Geopolymer typically achieves its strength by heat curing, which is a limitation for in-field applications. This study develops self-cured technologies for fly ash-based geopolymer curing in ambient conditions without external heat supply. Two approaches, (ⅰ) the combination of OPC and Geopolymer (GeoPC), and (ⅱ) different manufacturing procedures, were investigated. The results showed that the self-cured GeoPC could be developed with the setting time, early strength and microstructures of GeoPC enhancing when the amount of OPC replacement increased. The manufacturing procedure also directly influenced the solidifying behaviour and early strength development of geopolymer cement.
机译:地质聚合物通常通过热固化达到其强度,这是现场应用的局限性。这项研究开发了在没有外部供热的环境条件下,用于粉煤灰基地聚合物固化的自固化技术。研究了两种方法(ⅰ)OPC和地质聚合物(GeoPC)的组合,以及(ⅱ)不同的制造程序。结果表明,随着OPC置换量的增加,GeoPC的固化时间,早期强度和微观结构的增强可以发展自固化的GeoPC。制造过程也直接影响了地质聚合物水泥的固化行为和早期强度的发展。

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