B. Bibliographie, Mesure de contraintes sur ouvrages d'art par une méthode de libération miniaturisée, pp.5-14, 1985.

A. M. Kikuta and S. Masuda-y, Experimental study of mechanical behavior of reinforced concrete members affected by Alkali- Aggregate Reaction, 8th International Conference on Alkali-Aggregate Reaction, pp.691-696, 1989.

. Baulande-b, Contribution à la détermination des poussées de gonflement dues aux alcali-réactions', Thèse présentée devant l, 1993.

B. M. Fournier-b, Les produits de la réaction alcalis-silice dans le béton : étude de cas de la région de Québec, Canadian Mineralogist, vol.24, pp.2-271, 1986.

B. M. Carles-gibergues, La durabilité des bétons face à l'alcali-réaction', La Durabilité des Bétons. Collection de l'Association Technique de l'Industrie des Liants Hydrauliques, pp.285-347, 1992.

C. A. Boulay-c, Un extensom??tre ?? b??ton ??liminant l'influence des d??formations transversales sur la mesure des d??formations longitudinales, Matériaux et Constructions, pp.35-38, 1981.
DOI : 10.1007/BF02478720

B. G. , A. M. Schutte-w, and R. T. , The effect of alkali-aggregate reaction on the strength and deformation of reinforced concrete structure, 6th Internationa! Conference on Alkalies in Concrete, pp.401-410, 1983.

B. A. Boulay-c, . De-larrard-f, and !. J. Torrent, Une nouvelle méthode de surfaçage des éprouvettes en béton à hautes et très hautes performances, Bulletin de Liaison des Laboratoires des Ponts et Chaussées, pp.43-55, 1992.

C. B. and B. J. Moranville-regourd, A mathematical modelling to describe the effects of Alkali-Aggregate Reactions in concrete structures, 10th International Conference on Alkali-Aggregate Reaction in Concrete, pp.686-693, 1996.

C. S. Touzé-p, Étude de deux méthodes d'échantillonnage et tests chimiques sur les échantillons prélevés à l'aide du répartiteur PK1000, 1995.

C. S. Jensen-a, . Thaulow-n, and . Christensen-p, Studies of alkali-silica reaction, Part 3: Mechanisms by which NaCI and Ca, 1986.

C. D. Jensen-a, Studies of alkali-silica reaction, Part 4: effect of different alkali salt solution on expansion, Cement and Concrete Research, vol.17, issue.5, pp.777-783, 1987.

C. L. Ng-k, Some factors influencing expansion and Strength of the SERC/BRE Standard ASR concrete mix', Science and Engineering Research Council, Repair, Maintenance and Operations Conference, pp.89-94, 1989.

C. N. Currie-r and M. R. , The effects of alkali-silica reaction on the strength of prestressed concrete beams', The Structural Engineer, pp.287-292, 1990.

D. G. Oberholster-r, Alkali-silica reaction products and their development, Cement and Concrete Research, vol.18, pp.621-635, 1988.

D. Larrard, F. Torrenti-j, and M. Rossi-p, Le flambement à deux échelles dans la rupture du béton en compression, Bulletin de Liaison des Laboratoires des Ponts et Chaussées Mars-Avril, pp.51-55, 1988.

D. Larrard and F. , BHP et alcali-réaction : deux concepts incompatibles, pp.107-109, 1994.

D. Glasser and L. S. , Osmotic pressure and the swelling of gels, Cement and Concrete Research, vol.9, issue.4, pp.515-517, 1979.
DOI : 10.1016/0008-8846(79)90050-4

D. Glasser and L. S. , A reply to P.K. Mehta's discussion of ???osmotic pressure and the swelling of gels???, Cement and Concrete Research, vol.10, issue.1, pp.125-126, 1980.
DOI : 10.1016/0008-8846(80)90065-4

D. Glasser and L. S. Kataoka-n, On the role of calcium in the alkali-aggregate reaction, Cement and Concrete Research, vol.12, issue.3, pp.321-331, 1982.
DOI : 10.1016/0008-8846(82)90080-1

D. Glasser and L. S. Kataoka-n, The chemistry of ???alkali-aggregate??? reaction, Cement and Concrete Research, vol.11, issue.1, pp.1-9, 1981.
DOI : 10.1016/0008-8846(81)90003-X

D. Glasser and L. S. Kataoka-n, The chemistry of ???alkali-aggregate??? reaction, 5th International Conference on Aikali-Aggregate Reaction in Concrete, Cape Town, 1981.
DOI : 10.1016/0008-8846(81)90003-X

D. Glasser and L. S. Kataoka-n, A reply to J. Bensted's discussion of ???the chemistry of alkali-aggregate reaction???, Cement and Concrete Research, vol.11, issue.5-6, pp.809-810, 1981.
DOI : 10.1016/0008-8846(81)90046-6

D. Y. Prin-d, Alkali-Aggregate Reaction structural effects : a finite element model, 9th International Conference on Alkali-Aggregate Reaction in Concrete, pp.261-268, 1992.

D. S. Barneyback-r and . J. Struble-l, On the physics and chemistry of Alkali-Silica Reactions, 5th International Conference on Alkali- Aggregate Reaction in Concrete, Cape Town, 1981.

D. R. Brivot-f, Thermodynamic and kinetic approach to the alkalisilica reaction, Part Cement and Concrete Research, vol.122, issue.5, pp.941-948, 1992.

D. R. Brivot-f, Thermodynamic and kinetic approach to the alkalisilica reaction, Part Cement and Concrete Research, vol.223, issue.1, pp.93-103, 1993.

D. R. Brivot-f, A. Way, and . Shayan, A discussion of the paper "Study of some synthetically prepared hydrous alkali calcium silicates, Cement and Concrete Research, vol.23, pp.1001-1002, 1993.

D. R. Brivot-f, Solid-liquid equilibria in C-K-S-H / H20 systems, 10th International Conference on Alkali-Aggregate Reaction in Concrete, pp.927-933, 1996.

D. R. and N. A. Brivot-f, Mécanisme de la réaction alcali-silice, Journées des Sciences de l'Ingénieur JSI 94 des Laboratoires des Ponts et Chaussées Presqu'île de Giens, pp.225-233, 1994.

D. R. Brivot-f, Mechanism of the alkali-silica reaction, Congrès de la Chimie des Ciments, 1997.

D. B. , R. R. Houde-j, and . Blanchette-a, Expansion libre et contrainte développée par les réactions alcalis-granulats, CANMET / ACI SP- 126, 2ème Conférence Internationale sur la durabilité du béton, pp.797-815, 1991.

F. M. Kobayashi-k and K. T. , The static and dynamic behavior of reinforced concrete beams with cracking due to alkali-silica reaction, 7th International Conference on Alkali-Aggregate Reactions, pp.126-130, 1986.

F. Y. Ohga-h and . Uomoto-t, An analytical study concerning prediction of concrete expansion due to alkali-silica reaction 1, Third CANMET/ACI International Conference on Durability of Concrete, pp.757-779, 1994.

G. B. Le, Alcali-réaction dans le béton. Mécanisme, pathologie et prévention', Techniques de l'ingénieur, Traité construction, pp.2-252, 1995.

. Granger-l, Comportement différé du béton dans ies enceintes de centrales nucléaires Analyse et modélisation, Études et recherches des Laboratoires des Ponts et Chaussées, Série Ouvrages d'Art, OA21, Chapitre lit, pp.157-204, 1996.

G. G. Asgeirsson-h, Parameters affecting alkali expansion in Icelandic concretes, 6th International Conference on Alkalies in Concrete, pp.217-222, 1983.

G. J. Martineau-f, Mise en évidence du gel d'aicali-réaction par fluorescence dans un béton âgé d'un an', Bulletin de Liaison des Laboratoires des Ponts et Chaussées, Note technique, pp.100-101, 1991.

G. J. Martineau-f, Visualization of alkali-reaction products by fluorescence. Development of the method for the survey of structures, 9th International Conference on Alkali-Aggregate Reaction in Concrete, pp.395-402, 1992.

I. S. Fuji-m-"-kobayashi and . Nakano-k, Structural behaviors of reinforced concrete beams affected by Alkali-Silica Reaction, 8th international Conference on Alkali-Aggregate Reaction, pp.727-732, 1989.

J. F. Hornain-h and . Martinet-g, Pop-out formation and bulk cracking of concrete induced by calcareous metamorphic aggregates in tropical environment, 10th international Conference on Alkali-Aggregate Reaction in Concrete, pp.978-985, 1996.

J. A. and C. S. Christensen-p, Studies of alkali-silica reaction -Part I: a comparison of two accelerated tests methods, Cement and Concrete Research, vol.12, pp.641-647, 1982.

J. A. , C. S. Christensen-p, and . N. Jhaulow, Studies of alkali-silica reaction -Part II : effect of air-entrainment on expansion, Cement and Concrete Research, vol.14, pp.311-314, 1984.

J. V. Thaulow-n and S. J. , Simultaneous presence of alkali-silica gel and ettringite in concrete, Advances in Cement Research, pp.23-29, 1993.

J. M. Larive-l, systèmes de mesure dimensionnelle d'éprouvettes en béton, Journées des Sciences de l'Ingénieur JSI 94 des Laboratoires des Ponts et Chaussées Presqu'île de Giens, pp.193-200, 1994.

J. A. , E. K. , C. L. Amasaki, and S. , The suitability of cores in predicting the behaviour of structural members suffering from ASR, Magazine of Concrete Research, pp.154-150, 1994.

K. , K. Inoue, S. , and Y. T. Nakano-k, Alkali-aggregate reaction in prestressed concrete beams, The international Journal of Cement Composites and Lightweight Concrete, pp.233-240, 1988.

K. K. Shiraki-r and . Kawai-k, influence of alkali concentration distribution occuring in concrete members on expansion and cracking due to alkali-silica reaction, 8th International Conference on Alkali-Aggregate Reaction, pp.641-646, 1989.

L. C. , J. M. Dubois-j, and C. P. , Theoretical and experimental validation of the vibrating-wire principle. Application to a low stiffness strainmeter for embedment in concrete, Proceedings of the 4th International Symposium on Field Measurements in Geomechanics, pp.341-348, 1995.

L. C. and L. A. Joly-m, Behaviour of AAR-affected concrete, experimental data, 10th international Conference on Alkali-Aggregate Reaction in Concrete, pp.670-677, 1996.

L. Roux, A. Massieu-e, and G. B. , Evolution under stress of a concrete affected by AAR -Application to the feasibility of strengthening of a bridge by prestressing, 9th International Conference on Alkali-Aggregate Reaction in Concrete, pp.599-606, 1992.

L. Roy and R. , Déformations instantanées et différées des bétons à hautes performances, Thèse de doctorat de l'École Nationale des Ponts et Chaussées, 1995.

L. P. Tinawi-r and . Mounzer-n, Numerical simulation of concrete expansion in concrete dams affected by alkali-aggregate reaction: state-ofthe-art', Canadian Journal of Civil Engineering, vol.22, pp.692-713, 1995.

L. J. and P. A. Massard-p, Étude comparée de geis sîiico-calciques produits des réactions alcaiis-granulats dans les bétons et de gels synthétiques types, Cernent and Concrete Research, pp.623-631, 1996.

L. J. Massard-p and . Perruchot-a, Les alcalins appartiennentils à la structure des gels, produits des alcalis-réactions dans les bétons, pp.283-288, 1996.

L. J. Massard-p and . Perruchot-a, Mesure expérimentale de la cinétique de formation d'un gel silico-caicique, produit de la réaction alcalis-silice, 1997.

L. N. Deloye-f, Quantification de l'alcali-réaction à l'aide du calcul minéralogique, Premier Bilan, 1996.

L. N. Deloye-f, Quantification de l'alcali-réaction à l'aide du calcul minéralogique, Premier bilan', Compte-rendu de travail, 1996.

L. U. Sideris-k, Mechanismus und Wirkungsweise der Alkali- Zuschiag-Reaktïon, Sprechsaal für Keramik, pp.5-6, 1975.

M. F. Guédon-dubied and . Larive-c, Evaluation of the relationships between swelling, cracking, development of gels, 10th International Conference on Alkali-Aggregate Reaction in Concrete, pp.798-805, 1996.

M. P. Perruchot-a and L. J. , Étude des processus de formation des gels silico-calco-aicaiins observés dans les bétons, 1997.

L. P. Méthode-d-'essai-des, Essai de mise en évidence du gel d'alcali-réaction par fluorescence des ions uranyl, 1992.

M. Bibliographie, Porosity/Diffusivity and Alkali-Silica Reaction, Materials Research Society Symposium Proceedings, pp.225-233, 1989.

N. C. Hover-k, In-situ identification of ASR products in concrete, Cement and Concrete Research, vol.18, pp.455-463, 1988.

N. C. Hover-k, Some field studies of the new in-situ method for identification of alkali-silica reaction products, 8th International Conference on Alkali-Aggregate Reaction, pp.555-560, 1989.

N. C. Hover-k, Further study of an in-situ identification method for alkali-silica reaction products in concrete, Gel fluorescence reveals reaction products traces', Concrete international, pp.770-778, 1989.

N. P. Dron-r, Z. H. Thouvenot-r, and . Brivot-f, Étude de Sa transformation sol-gel du complexe calcium-polysilicate par RMN de 43 Ca\ Compte-Rendu de l'Académie des Sciences, t. 320, Série I! b, pp.485-488, 1995.

O. S. Yoshioka-y and . Shinozaki-y, The mechanical behaviour of beams coated after Alkali-Silica Reaction damage, 8th International Conference on Alkali-Aggregate Reaction, pp.697-702, 1989.

P. R. Bérubé-m, . Pigeon-m, and R. S. Fournier-b, Mechanical behavior of concrete affected by ASR, 8th International Conference on Alkali-Aggregate Reaction, pp.721-726, 1989.

P. W. Pérami-r, Mise en évidence du rôle essentiel des ions OH" dans les réactions alcali-silice, Cement and Concrete Research, vol.23, pp.1121-1129, 1993.

P. W. Pérami-r and . Baulande-b, A new device for AAR-swelling pressure determination, 10th International Conference on Alkali-Aggregate Reaction in Concrete, pp.806-813, 1996.

P. K. Oberholster-r, Investigation of different variables that influence the expansion of concrete caused by Alkali-Aggregate Reaction under natural environmental conditions, National Building Research Institute, Council for scientific and industrial Research, 1985.

R. R. and C. B. Sorrentino-d, Storage conditions and reliability of the ASTM C227 mortar bar and CSA A23. 2-14 A concrete prism tests', Workshop on Canadian Developments in Testing Concrete Aggregates for Alkali- Aggregate Reactivity, pp.190-200, 1990.

R. S. Sarkar-s and A. P. , Alkali-Aggregate Reactivity -Is it always harmful, 8th International Conference on Alkali-Aggregate Reaction, pp.809-814, 1989.

R. S. Majlesi-y and . Burley-e, Investigation of factors influencing the expansive behaviour, compressive strength and modulus of rupture of alkali-silica reactive concrete using laboratory concrete mixes, Magazine of Concrete Research, pp.11-21, 1995.

R. C. Hooton-r, Reduction in mortar and concrete expansion with reactive aggregates due to alkali-leaching, Cement, Concrete, and Aggregates, CCAGDP, pp.42-49, 1991.

S. A. and B. J. Mébarki-a, Modelling the alkali-aggregate reaction within a probabilistic framework, 10th International Conference on Alkali-Aggregate Reaction in Concrete, pp.694-701, 1996.

S. A. Quick-g, Microstructure and composition of AAR products in conventional standard and new accelerated testing, 8th International Conference on Alkali-Aggregate Reaction, pp.475-482, 1989.

S. A. Quick-g, Relative importance of deleterious reactions in concrete: formation of AAR products and secondary ettringite, Advances in Cement Research, pp.149-157, 1991.

S. A. Quick-g, Microscopic features of cracked and uncracked concrete railway sleepers, AC! Materials Journal, vol.89, issue.4, pp.348-361, 1992.

S. A. Diggins-r and . Ivanusec-i, Long-term effectiveness of fly ash in preventing deleterious expansion due to Alkali-Aggregate Reaction in Concrete, 10th International Conference on Alkali-Aggregate Reaction in Concrete, pp.538-545, 1996.

S. R. and P. Cl, Threshold alkaîi contents for expansion of concretes containing British aggregates',Cement and Concrete Research, pp.990-994, 1992.

K. Sideris, Theorie des Mechanismus der Alkali-Kieselsaüre- Reaktion', Thèse de doctorat de l'Université d, 1974.

S. R. Al-asali-m, influence of alkali-silica reaction on the engineering properties of concrete', Alkalis in concrete, STP930 American Society for Testing and Materials, pp.69-86, 1986.

T. F. Le-maou-f, Protection des éprouvettes de béton visà-vis de la dessiccation. Le point sur quelques techniques de laboratoire', Bulletin des Laboratoires des Ponts et Chaussées, pp.105-119, 1996.

W. S. Shayan-a, Synthesis and characterisation of crystalline analogues of alkali-aggregate reaction products, Cement and Concrete Research, vol.23, pp.471-479, 1993.

W. H. Balendran-r, Use of analytical methods to estimate concrete deterioration due to AAR, 10th International Conference on Alkali- Aggregate Reaction in Concrete, pp.678-685, 1996.

W. W. Hubert-c and E. R. , Contribution to the chemical reaction mechanism of the alkali-aggregate reaction, 10th International Conference on Alkali-Aggregate Reaction in Concrete, pp.919-926, 1996.

W. M. and C. J. Zou-y, The process and mechanism of alkali-silica reaction using fused silica as the reactive aggregate', Advances in Cement Research, pp.117-125, 1994.

W. J. , J. A. Norris, and P. , Management strategies for buildings and bridges subject to degradation from Alkali-Aggregate Reaction, 7th International Conference on Alkali-Aggregate Reactions, pp.178-182, 1986.

W. J. Norris, P. Leek, and D. , Physical behaviour of AAR damaged concrete in structures ans in test conditions, 8th International Conference on Alkali-Aggregate Reaction, pp.765-770, 1989.

C. Du and T. , Couleur gris moyen C'est la couleur la plus fréquemment rencontrée. Le réseau non calcaire est composé de silice

L. Densiíé-du-réseau-non-calcaire-est-très-variable, De larges zones de calcite pure sont constituées de cristaux automorphes (Photo An. 1. 10) Le réseau diffus est constitué de silice pure (Analyse 6 )

/. Mes, 1 í%t> \ß IVI11? I \J IVÍ IH I VJVili Übt I \f I T iiiif »TTiritriTrrt*iiTiriïtiriiiiiitt«rni>iiii»ii't«ttrt«tiif iitiri«iiiiiiTTiiiriii

. Mes, 8 -1096 -992 -895 -797 -696 -599 j -501 -401 -302 -198

. Prst, None Lsec:i site 11, pp.14-95

K. Sik and . Cak, afc-':r -:-r^T