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Innovative Fly Ash Geopolymer-Epoxy Composites: Preparation, Microstructure and Mechanical Properties

机译:创新的粉煤灰地质聚合物-环氧树脂复合材料:制备,微观结构和力学性能

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摘要

The preparation and characterization of composite materials based on geopolymers obtained from fly ash and epoxy resins are reported for the first time. These materials have been prepared through a synthetic method based on the concurrent reticulation of the organic and inorganic components that allows the formation of hydrogen bonding between the phases, ensuring a very high compatibility between them. These new composites show significantly improved mechanical properties if compared to neat geopolymers with the same composition and comparable performances in respect to analogous geopolymer-based composites obtained starting from more expensive raw material such as metakaolin. The positive combination of an easy synthetic approach with the use of industrial by-products has allowed producing novel low cost aluminosilicate binders that, thanks to their thixotropicity and good adhesion against materials commonly used in building constructions, could be used within the field of sustainable building.
机译:首次报道了基于由粉煤灰和环氧树脂获得的地聚合物的复合材料的制备和表征。这些材料是通过基于有机和无机成分同时形成网状结构的合成方法制备的,该方法允许在相之间形成氢键,从而确保它们之间的极高相容性。与具有相同组成的纯净地质聚合物相比,这些新的复合材料显示出显着改善的机械性能,并且相对于从较昂贵的原材料(例如偏高岭土)获得的类似的基于地质聚合物的复合材料而言,具有可比的性能。易于合成的方法与使用工业副产品的积极结合,使得可以生产出新型的低成本铝硅酸盐粘合剂,由于其触变性和对建筑结构中常用材料的良好粘附性,可用于可持续建筑领域。

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