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Effect of elevated temperature on alkali-activated geopolymeric binders compared to portland cement-based binders

机译:与波特兰水泥基粘合剂相比,温度对碱活化的地环聚物粘合剂的影响

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This research focused on developing thermally-stable materials based on alkali-activation of slag, fly ash, and metakaolin compared to portland cement mixtures by using a hierarchical approach to material design. At lower length scales, X-ray diffraction (XRD) characterized the mineralogy that coupled to higher length scale experiments using thermogravimetric analysis (TGA) for determining the materials thermal stability. Additionally, high-energy X-ray computed microtomography (mu CT) determined the best-performing material formulation that minimized thermal damage when exposed to high temperatures (650 degrees C). The thermal loading was ramped up to 650 degrees C from ambient temperature in 60 s and then held for a total of 10 min. The mu CT identified that the alkali-activated fly ash mortar had less initial porosity than the ordinary portland cement mixtures, with more than 66% of the pores between 20 and 50 mu m in diameter. Consequently, the alkali-activated fly ash mortar was able to dissipate approximately 565 degrees C in just 50 mm of material, outperforming all the other mixes studied in this paper with mu CT confirming minimal damage after the temperature exposure. (C) 2016 Elsevier Ltd. All rights reserved.
机译:该研究集中于通过使用分级设计的分层方法,基于渣油,粉煤灰和甲状腺素的碱活化基于碱活化的渣油,粉煤灰和甲状腺素的材料进行热稳定材料。在较低的长度尺度下,X射线衍射(XRD)表征了使用热重分析(TGA)耦合到更高长度尺度实验的矿物学,用于确定材料热稳定性。另外,高能X射线计算的微观图(MU CT)确定了最佳性能的材料配方,其在暴露于高温时最小化热损坏(650℃)。将热负载从60秒的环境温度升高至650℃,然后保持10分钟。 MU CT鉴定出碱性粉煤灰砂浆的初始孔隙率较少,普通的波特兰水泥混合物具有超过66%的孔径,直径为20至50μm。因此,碱活化的粉煤灰砂浆能够在仅50毫米的材料中散发约565℃,优于本文中研究的所有其他混合物,在温度暴露后确认最小损坏。 (c)2016 Elsevier Ltd.保留所有权利。

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