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High strength/density ratio in a syntactic foam made from one-part mix geopolymer and cenospheres

机译:由单组分混合地质聚合物和空心球制成的复合泡沫中的高强度/密度比

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By designing a composite of one-part mix geopolymer and hollow cenospheres, a commercially viable and environmentally-friendly foam was synthesised with a high strength/density ratio. The composite is made of a dry mix powder of geopolymer source materials, sodium silicate alkali activator and cenospheres, which starts to react when mixed with water. As the geopolymer reacts and gains strength over time, the surface of the cenospheres takes part in the reaction and forms a strong bond with the binding matrix. Synchrotron-based Fourier transform infrared microspectroscopy revealed, for the first time, the chemical bonding interaction of the amorphous interfacial layer between the geopolymer and cenospheres. The resulting foam composite gained a strength of 17.5 MPa at a density of 978 kg/m(3), which is noticeably higher than that of existing environmentally friendly lightweight foams made under ambient conditions. The thermal conductivity of the foam was measured to be around 0.28 kW/mK, which is similar to that of foam concrete. This foam produced in this study is found to be lightweight, strong and possess a desirable insulating capacity, while the preparation process of the one-part mix composite is maintained simply by adding water and curing the mixture at an ambient temperature.
机译:通过设计单组分混合地质聚合物和空心空心球的复合材料,合成了具有高强度/密度比的商业上可行的环保泡沫。该复合材料由地聚合物原料,硅酸钠碱活化剂和空心球的干混粉末制成,当与水混合时会开始反应。随着地质聚合物反应并随着时间的推移获得强度,空心球的表面会参与反应并与结合基质形成牢固的结合。基于同步加速器的傅立叶变换红外显微技术首次揭示了地聚合物与空心层之间无定形界面层的化学键相互作用。所得泡沫复合材料的密度为978 kg / m(3),强度为17.5 MPa,明显高于在环境条件下制造的现有环保轻质泡沫塑料。测得泡沫的热导率约为0.28 kW / mK,与泡沫混凝土的热导率相似。发现该研究中产生的泡沫是轻质的,坚固的并且具有理想的绝缘能力,而仅通过添加水并在环境温度下固化混合物来维持单组分混合复合物的制备过程。

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