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Research Preparation and Properties of Geopolymer-Based Rapid Repair Materials

机译:基于地聚合物的快速修复材料的制备与性能研究

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摘要

Metakaolin (MK)-geopolymer has rapid coagulation at higher curing temperature, excellent durability, and mechanical properties. The aim of this research was to develop rapid repair materials of MK-based geopolymer cured at room temperature. In this study, portland cement was added to MK to prepare geopolymer. The influences of cement on the water requirement of normal consistency, setting time, bulk density, flowability, consistency, mechanical properties, and reaction mechanism of the geopolymer system were studied. The results showed that the consistency, flowability, bulk density, and mechanical properties of geopolymer were improved, and the setting time is prolonged by mixing a proper amount of cement into MK-geopolymer. When the cement content was 40 , the strength of the geopolymer was the highest. Scanning electron microscopy and Fourier transform infrared analysis showed that the calcium silicate hydrate gel and sodium aluminosilicate hydrate gel structures overlapped each other and formed compact skeleton structure in the modified MK-geopolymer. The appropriate content of cement can give the geopolymer excellent performance under room temperature, which will contribute to the on-site construction of geopolymer.
机译:偏高岭土(MK)-地聚物在较高固化温度下具有快速凝固、优异的耐久性和机械性能。本研究的目的是开发室温固化的MK基地聚合物的快速修复材料。本研究将硅酸盐水泥添加到MK中制备地聚合物。研究了水泥对地聚物体系正常稠度需水量、凝结时间、堆积密度、流动性、稠度、力学性能及反应机理的影响。结果表明,在MK地聚合物中掺入适量的水泥,提高了地聚合物的稠度、流动性、堆积密度和力学性能,延长了凝结时间。当水泥含量为40 %时,地聚物强度最高。扫描电镜和傅里叶变换红外分析表明,水合硅酸钙凝胶和水合铝硅酸钠凝胶结构相互重叠,在改性的MK地聚物中形成致密骨架结构。适量的水泥可以使地聚合物在室温下具有优异的性能,这将有助于地聚合物的现场施工。

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