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Relationships between composition, structure and strength of inorganic polymers

Part I Metakaolin-derived inorganic polymers

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Abstract

“Inorganic polymers”, or geopolymers, are novel synthetic binders produced by reactions between alkali silicate solutions and solid aluminosilicates. In Part 1 of this study, 12 metakaolin-derived inorganic polymers were produced with various compositions. The effect of the concentration of each of the four most important oxide components of inorganic polymers (Na2O, SiO2, Al2O3 and H2O) was assessed by electron microscopy and by strength testing. Additionally, the effect of the type of alkali cation was determined. In general, the results followed expected trends and there were clear correlations between composition, microstructure and strength. It was found that high strength was related to low porosity and a dense, fine grained microstructure. Such a structure was found in inorganic polymers with high alkali contents (Na2O/Al2O3 = 1.2) and low water contents (H2O/Al2O3 = 12). High silica and low alumina contents (SiO2/Al2O3 = 3.5–3.8) also produced this structure, however, there was a limit beyond which the strength deteriorated. In relation to the effect of alkali cations, sodium was found to give higher resin strength than potassium. The results of the study further confirm that the selection of precursor raw materials remains a critical factor to initial strength development. The relationship between different resin formulations and resulting microstructures are discussed.

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References

  1. M. STEVESON and K. SAGOE-CRENTSIL, “Relationships Between Composition, Structure and Strength in Inorganic Polymers: Part 2-Fly ash Derived Inorganic Polymers”, submitted to J. Mater. Sci. (2002).

  2. J. G. S. VAN JAARSVELD, J. S. J. VAN DEVENTER and L. LORENZEN, Met. Mater. Trans. B 29B (1998) 283.

    Google Scholar 

  3. N. DAVIDOVITS, M. DAVIDOVICS and J. DAVIDOVITS, “Ceramic–Ceramic Composite Material and Production Method,” US Patent 4,888,311 (1989).

  4. J. DAVIDOVITS, “Method for Eliminating the Alkali–Aggregate Reaction in Concretes and Cement Thereby Obtained,” US Patent 5,288,321 (1994).

  5. Idem. J. Mater. Edu. 16 (1994) 91.

    Google Scholar 

  6. V. F. F. BARBOSA, K. J. D. MACKENZIE and C. THAUMATURGO, Int. J. Inorg. Mater. 2 (2000) 309.

    Google Scholar 

  7. A. PALOMO, A. MACIAS, M. T. BLANCO and F. PUERTAS, in Proceedings of the 9th International Congress on the Chemistry of Cement, New Delhi, India, 1992, Vol. 5, p. 505.

  8. A. PALOMO, A. MACIAS and E. MENDEZ, in Proceedings of the 14th International Conference on Cement Microscopy, California, USA, 1992, p. 379.

  9. J. DAVIDOVITS, “Inorganic Polymers and Methods of Making Them,” US Patent 4,349,386 (1982).

  10. A. PALOMO and F. P. GLASSER, Br. Ceram. Trans. J. 91 (1992) 107.

    Google Scholar 

  11. H. RAHIER, W. SIMONS, B. VAN MELE and M. BIESEMANS, J. Mater. Sci. 32 (1997) 2237.

    Google Scholar 

  12. T. SILVERSTRIM, H. ROSTAMI, B. CLARK and J. MARTIN, in Proceedings of the 19th International Conference on Cement Microscopy, Cincinnati, USA, 1997, p. 355.

  13. J. W. PHAIR and J. S. J. VAN DEVENTER, Miner. Eng. 14 (2001) 289.

    Google Scholar 

  14. J. G. S. VAN JAARSVELD and J. S. J. VAN DEVENTER, Ind. Eng. Chem. Res. 38 (1999) 3932.

    Google Scholar 

  15. M. ROWLES and B CONNOR, J. Mater. Chem. 13 (2003) 1161.

    Google Scholar 

  16. W. SUN, Y. ZHANG, W. LIN and Z. LIU, Cem. Conc. Res. 34 (2004) 935.

    Google Scholar 

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Correspondence to K. Sagoe-Crentsil.

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Steveson, M., Sagoe-Crentsil, K. Relationships between composition, structure and strength of inorganic polymers. J Mater Sci 40, 2023–2036 (2005). https://doi.org/10.1007/s10853-005-1226-2

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  • DOI: https://doi.org/10.1007/s10853-005-1226-2

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