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Synergistic effect of carbon nanotube/TiO_2 nanotube multi-scale reinforcement on the mechanical properties and hydration process of portland cement paste

机译:碳纳米管/ TiO_2纳米管多尺度加固对波特兰水泥浆料力学性能和水化过程的协同作用

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The synergistic effect of hybrid carbon nanotube (CNT)/TiO2 nanotube (TNT) multi-scale reinforcement on the mechanical properties, early-age hydration process, and microstructure of Portland cement paste was investigated. In this study, TNT was synthesized via the hydrothermal process. The dispersion of CNT in an aqueous solution was enhanced in the hybrid CNT/TNT. Further, the dispersion state of CNT was modified to a smaller agglomeration of hybrid CNT/TNT. At the optimal CNT/TNT ratio (0.1 wt% CNT/0.5 wt% TNT), an earlier initiation of the acceleration period in the hydration process, an enhanced degree of hydration, and improvements of 29% and 40% in the compressive and splitting tensile strengths of the cement paste, respectively, were observed. Further, the time taken for the occurrence of the calorimetric peak of cement paste was shortened from 3 h (without nanotubes) to 2.3 h and the time taken to achieve maximum peak intensity was shortened from 13.6 h to 11.5 h. Enhancing effect of the hybrid CNT/TNT on the hydration and mechanical properties of cement paste was more apparent than only that of CNT or TNT. The results suggest that using multi-scale hybrid CNT/TNT can be feasible as a new nano reinforcing method for various cementitious materials. (C) 2021 Elsevier Ltd. All rights reserved.
机译:研究了杂交碳纳米管(CNT)/ TiO2纳米管(TNT)多尺度增强对机械性能,早期水合过程和薄层水泥浆料微观结构的协同作用。在该研究中,通过水热法合成TNT。 CNT在杂合CNT / TNT中的CNT在水溶液中的分散。此外,将CNT的分散状态改性为杂种CNT / TNT的较小附聚。在最佳的CNT / TNT比(0.1wt%CNT / 0.5wt%TNT),早期开始的加速度在水合过程中,水合增强程度,并且压缩和分裂的提高为29%和40%观察到水泥糊的拉伸强度。此外,从3小时(没有纳米管)缩短了水泥浆料的量热峰的发生时间,从2.3小时缩短,从13.6小时缩短了实现最大峰强度的时间。增强杂交CNT / TNT对水泥浆料的水化和机械性能的影响比仅CNT或TNT的水泥糊的机械性能更加明显。结果表明,使用多尺度杂交CNT / TNT可以作为各种胶凝材料的新型纳米增强方法可行。 (c)2021 elestvier有限公司保留所有权利。

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