Influence of Nano-glass Powder on the Characteristics Properties as Well as Stability Against Firing for Geopolymer Composites

Author:

Khater H. M.ORCID,Ghareeb M.

Abstract

AbstractInfluence of nano-glass powder on physico-mechanical properties of geopolymer composite materials has been studied, in addition to studying their firing stability against high temperature from 500 up to 1000 °C. For increasing mechanical, physical as well as firing stability for metakaolin composites; Nano-glass powder was used. Alumino-silicate materials are kaolin, fired kaolin (metakaolin) and limestone all pass 75 µm. Materials prepared at water/binder ratios in a range of 0.40; whereas the used activator 5 M sodium hydroxide with equal volume of liquid sodium silicate. Nano-glass powder added as a partial replacement for metakaolin material in the ratio of 1 up to 9%. Results indicated that compressive strengths of geopolymer mixes incorporating Nano glass powder were obviously higher than those of control one and increased up to 7% followed by slight decrease of on using 9%. Firing of hardened geopolymer results in high thermal resistance up to 500 °C then exposed to decrease up to 800 then increased again at 1000 °C for specimens incorporated 7 and 9% nano-glass powder. However, no micro-cracks were noticed up to 800 °C for all samples as recorded by visual examination of the fired samples.

Funder

Housing & Building National Research Center

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference52 articles.

1. Balaguru, P.; Chong, K.: Nanotechnology and concrete research opportunities. In: Proceedings of the ACI Session on Nanotechnology of Concrete: Recent Developments and Future Perspectives, pp. 15–28 (2006)

2. Prince Arulraj, G.; Jemimah Carmichael, M.: Effect of nano fly ash on strength of concrete. Int. J. Civ. Eng. Struct. Eng. 2(2), 475–482 (2011)

3. Khater, H.M.; El-Sabbagh, B.A.; Fanny, M.; Ezzat, M.; Lottfy, M.: Effect of nano-silica on alkali activated water-cooled slag geopolymer. ARPN J. Sci. Technol. 2(3), 170–176 (2012)

4. Kuo, W.-Y.; Huang, J.-S.; Lin, C.-H.: Effects of organo-modified montmorillonite on strengths and permeability of cement mortars. Cem. Concr. Res. 36, 886–895 (2006)

5. Li, H.; Xiao, H.; Ou, J.: A study on the mechanical and pressure sensitive properties of cement mortar with nano phase materials. Cem. Concr. Res. 34, 435–438 (2004)

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