(1977) Journal of Applied Crystallography — Vol. 10, p. 270-276 (1977)
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Authors
Slegers, P.A.
Author
Genet, MichelUCLouvain
Author
Leonard, A.J.
Author
Fripiat, J.J.
Author
Abstract
The structures of anhydrous calcium silicates Ca/sub 3/SiO /sub 5/ (C/sub 3/S), Ca/sub 2/SiO/sub 4/ ( beta -C /sub 2/S and gamma -C/sub 2/S) and CaSiO/sub 3/ (CS) have been examined and compared whereas the hydration products of the main cement component C/sub 3/S have been studied by radial electron density distribution (RED) and infrared (IR) spectroscopy. The polymerization of the initially isolated silica tetrahedra in the course of the hydration process of C/sub 3/S has been recognized by several authors as the responsible agent of the mechanical resistance developed during the hardening. The invoked polycondensation has been directly proven by the appearance in the RED curves, between 12 and 48 h, of Si-Si vectors at 3.1 A and of half-/b a/ parameter contributions at 5.65 A , which represent typical structural features of the poorly crystallized tobermorite-like CSH residue. Independently, this structural transformation was also followed in IR spectra by the shift of the orthosilicate (C/sub 3/S) Si-O stretching doublet 935-890 cm/sup -1/ toward a single higher-frequency band at 975 cm/sup -1/. Finally, assuming a linear hydration process, synthetic mixtures of the RED profiles of the three main components, i.e. C/sub 3/S, tobermorite and CH, account reasonably, within the first 6 A region, for the sample's RED profiles observed after up to 5 d hydration (63%).
Slegers, P. A., Genet, M., Leonard, A. J., & Fripiat, J. J. (1977). Structural transformation of tricalcium silicate during hydration. Journal of Applied Crystallography, 10, 270-276. https://hdl.handle.net/2078.5/149177 (Original work published 1977)