M. Bigare, A. Guinier, C. Mazieres, M. Regourd, N. Yannaquis et al., Polymorphism of Tricalcium Silicate and Its Solid Solutions, Journal of the American Ceramic Society, vol.19, issue.4, pp.50-609, 1967.
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J. Fayos and M. Et-perez-mendez, « Crystallography of Ca 3 OSiO 4 (C 3 S) Related Phases, Am. Ceram. Soc. Bull, issue.8, pp.65-1191, 1986.

G. W. Groves, T.e.m. Studies of Cement Clinker Compounds, their Hydration and Strong Cement Pastes [and Discussion], Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, vol.310, issue.1511, pp.79-83, 1983.
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K. E. Hudson and G. W. Et-groves, The structure of alite in Portland cement clinker ??? TEM evidence, Cement and Concrete Research, vol.12, issue.1, pp.61-68, 1982.
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A. M. Il-'inets and Y. A. Et-malinovskii, « Crystal Structure of the Rhombohedral Modification of Tricalcium Silicate Ca 3 SiO 5 , » Sov, Phys. Dokl, vol.30, 0191.

J. W. Jeffery, The crystal structure of tricalcium silicate, Acta Crystallographica, vol.5, issue.1, pp.26-35, 1952.
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I. Maki and S. Et-chromy, Microscopic study on the polymorphism of Ca3SiO5, Cement and Concrete Research, vol.8, issue.4, pp.407-414, 1978.
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I. Maki and K. Et-goto, Factors influencing the phase constitution of alite in portland cement clinker, Cement and Concrete Research, vol.12, issue.3, pp.301-308, 1982.
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I. Maki and K. Et-kato, Phase identification of alite in portland cement clinker, Cement and Concrete Research, vol.12, issue.1, pp.93-100, 1982.
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W. G. Mumme, « Crystal Structure of Tricalcium Silicate from a Portland Cement Clinker and its Application to Quantitative XRD Analysis, » N, Jb. Miner. Mh., H, vol.4, pp.145-160, 1995.

F. Nishi and Y. Et-takeuchi, « The Rhombohedral Structure of Tricalcium Silicate at 1200°C, » Zeit, Crist, vol.168, pp.197-212, 1984.

F. Nishi, Y. Takeuchi, and I. Et-maki, « The Tricalcium silicate Ca 3 O[SiO 4 ] : the Monoclinic Superstructure, Zeit. Crist, vol.172, pp.297-314, 1985.

M. Regourd, « L'hydratation du ciment Portland, » Le béton hydraulique, pp.193-221, 1982.

W. Sinclair and G. W. Et-groves, Transmission Electron Microscopy and X-Ray Diffraction of Doped Tricalcium Silicate, Journal of the American Ceramic Society, vol.62, issue.5, pp.325-330, 1984.
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M. Bigare, A. Guinier, C. Mazieres, M. Regourd, N. Yannaquis et al., Polymorphism of Tricalcium Silicate and Its Solid Solutions, Journal of the American Ceramic Society, vol.19, issue.4, pp.50-609, 1967.
DOI : 10.1021/ac60209a014

W. Eysel and T. Et-hahn, *, Zeitschrift f??r Kristallographie, vol.131, issue.1-6, pp.40-59, 1970.
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A. M. Il-'inets and M. J. Bikbau, « New Rhombohedral Modification Ca 3 SiO 5 and Mechanism of Atomic Transformation during the Phase Transition, » XII European Crystallographic Meeting, pp.77-78, 1989.

J. W. Jeffery, The crystal structure of tricalcium silicate, Acta Crystallographica, vol.5, issue.1, pp.26-35, 1952.
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J. W. Jeffery, « The Tricalcium Silicate Phase, Proc. of the 3rd ISCC, pp.30-48, 1954.

I. Maki and S. Et-chromy, Microscopic study on the polymorphism of Ca3SiO5, Cement and Concrete Research, vol.8, issue.4, pp.407-414, 1978.
DOI : 10.1016/0008-8846(78)90020-0

I. Maki and K. Et-kato, Phase identification of alite in portland cement clinker, Cement and Concrete Research, vol.12, issue.1, pp.93-100, 1982.
DOI : 10.1016/0008-8846(82)90103-X

I. Maki and K. Et-goto, Factors influencing the phase constitution of alite in portland cement clinker, Cement and Concrete Research, vol.12, issue.3, pp.301-308, 1982.
DOI : 10.1016/0008-8846(82)90078-3

F. Nishi and Y. Et-takeuchi, « The Rhombohedral Structure of Tricalcium Silicate at 1200°C, » Zeit, Crist, vol.168, pp.197-212, 1984.

F. Nishi, Y. Takeuchi, and I. Et-maki, « The Tricalcium silicate Ca 3 O[SiO 4 ] : the Monoclinic Superstructure, Zeit. Crist, vol.172, pp.297-314, 1985.

M. Regourd, « Les transformations polymorphiques du silicate tricalcique, » Rev, Matér. Constr., N°, vol.620, pp.167-176, 1967.

M. Regourd, « L'hydratation du ciment Portland, » Le béton hydraulique, pp.193-221, 1982.

W. Sinclair and G. W. Et-groves, Transmission Electron Microscopy and X-Ray Diffraction of Doped Tricalcium Silicate, Journal of the American Ceramic Society, vol.62, issue.5, pp.325-330, 1984.
DOI : 10.1107/S0567739476001551

G. Yamaguchi and H. Et-miyabe, « Precise determination of the 3CaO. SiO2 cells and interpretation of their X-Ray Diffraction patterns, J. Am. Ceram. Soc, pp.43-47, 1960.

.. Relations-de-surstructures-dans-l-'espace-direct and M. <m>, 70 2-1-1 Relation entre <M> et, p.72

M. Calcul-de-la-structure and <. Et, 74 2-2-2 Indexation des raies de surstructure : mailles M'375 2-2-3 Utilisation du Full Pattern Matching : détermination d'une maille multiple minimale, pp.2-2

.. Introduction-de-nouvelles-mailles, 85 3-2-1 Introduction d'une nouvelle maille triclinique T'1 Introduction d'une maille triple quasi-monoclinique T'3 Introduction d'une maille quasi-monoclinique, pp.3-5

?. Que-faire-de-ces-diverses-mailles, 96 4-1-1 Variation des paramètres de maille Positions et extinctions des raies de diffraction, p.97

M. Modèles-proposés-dans-la-littérature-pour, 108 1-1-1 Calcul de la maille moyenne, p.112

.. Environnements-des-silicatessymétrie-et-anisotropie-de-la-coordinence, 127 1-3-1 Environnement des trois silicates127 1-3-2 Éléments de symétrie locaux : pseudosymétrie rhomboédrique et symétrie monoclinique, pp.1-3

L. Dissymétrie-entre, hypothèses sur la cohésion du C 3 S et sa réactivité lors de l'hydratation, p.139

R. Analyse-des, Relations de groupes et sous-groupes entre les polymorphes, pp.3-4

.. Analyse-tridimensionnelle, 166 4-2-1 Distances SiO 4 -SiO 4, 4-2-2 Symétrie ternaire et analyse bidimensionnelle : une vision rhomboédrique de la structure, p.168

W. G. Mumme, « Crystal Structure of Tricalcium Silicate from a Portland Cement Clinker and its Application to Quantitative XRD Analysis, » N, Jb. Miner. Mh., H, vol.4, pp.145-160, 1995.

F. Nishi, Y. Takeuchi, and I. Et-maki, « The Tricalcium silicate Ca 3 O[SiO 4 ] : the Monoclinic Superstructure, Zeit. Crist, vol.172, pp.297-314, 1985.

M. Bigare, A. Guinier, C. Mazieres, M. Regourd, N. Yannaquis et al., Polymorphism of Tricalcium Silicate and Its Solid Solutions, Journal of the American Ceramic Society, vol.19, issue.4, pp.50-609, 1967.
DOI : 10.1021/ac60209a014

A. M. Il-'inets and Y. A. Et-malinovskii, « Crystal Structure of the Rhombohedral Modification of Tricalcium Silicate Ca 3 SiO 5 , » Sov, Phys. Dokl, vol.30, 0191.

J. W. Jeffery, The crystal structure of tricalcium silicate, Acta Crystallographica, vol.5, issue.1, pp.26-35, 1952.
DOI : 10.1107/S0365110X52000083

W. G. Mumme, « Crystal Structure of Tricalcium Silicate from a Portland Cement Clinker and its Application to Quantitative XRD Analysis, » N, Jb. Miner. Mh., H, vol.4, pp.145-160, 1995.

W. G. Mumme, R. J. Hill, G. Bushnell-wye, and E. R. Et-segnit, « Rietveld Crystal Structure Refinements, Crystal Chemistry and Calculated Powder Diffraction Data for the Polymorphs of Dicalcium Silicate and Related Phases, Jb. Miner. Abh, vol.169, pp.35-68, 1995.

F. Nishi and Y. Et-takeuchi, « The Rhombohedral Structure of Tricalcium Silicate at 1200°C, » Zeit, Crist, vol.168, pp.197-212, 1984.

F. Nishi, Y. Takeuchi, and I. Et-maki, « The Tricalcium silicate Ca 3 O[SiO 4 ] : the Monoclinic Superstructure, Zeit. Crist, vol.172, pp.297-314, 1985.

. La-maille-Élémentaire-peut-Être-vue-comme-un-assemblage-de, Huit cubes élémentaires sont occupés par une molécule (Al 6 O 18 ) 18-(8*6 = 48 Al et 8*18 = 144 O) formée de six tétraèdres AlO 4 en anneaux (Figure A5-2) centrés sur huit positions 8c

. Ca, Les 56 calcium restants sont aux centres des 56 cubes ne contenant pas d'anneau. Deux anneaux voisins de même axe ternaire sont reliés par un centre d'inversion en position 4a (0, 0, 0) où est placé un atome de calcium Ca1, pp.5-7

A. A. Colville and S. Et-geller, The crystal structure of brownmillerite, Ca2FeAlO5, The Crystal Structure of Brownmillerite, Ca 2 FeAlO 5, pp.2311-2315, 1971.
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K. H. Jost, B. Ziemer, and R. Et-seydel, Redetermination of the structure of ??-dicalcium silicate, Acta Crystallographica Section B Structural Crystallography and Crystal Chemistry, vol.33, issue.6, pp.1696-1700, 1977.
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W. G. Mumme, R. J. Hill, G. Bushnell-wye, and E. R. Et-segnit, « Rietveld Crystal Structure Refinements, Crystal Chemistry and Calculated Powder Diffraction Data for the Polymorphs of Dicalcium Silicate and Related Phases, Jb. Miner. Abh, vol.169, pp.35-68, 1995.