B. Baroghel-bouny, Conception des bétons pour une durée de vie donnée des ouvrages, Maîtrise de la durabilité vis-à-vis de la corrosion des armatures et de l'alcali-réaction, Etat de l'art et guide pour la mise enoeuvre d'un approche performantielle et prédictive sur la base d'indicateurs de durabilité http://www.afgc.asso.fr/images/stories/pub/Indicateurs-durabilite.pdf [AFPC-AFREM, 1997] Durabilité des bétons, Méthodes recommandées pour la mesure des grandeurs associées à la durabilité, Compte-rendu des journées techniques AFPC-AFREM, 11 et 12 décembre, Qualitative Description of the Micro-ice Body Freeze-thaw Damage Mechanism in Concrete. Freeze-thaw Testing Of Concrete ? Input To Revision of CEN Test Methods, Workshop proceeding From a Nordic Mini-seminar, pp.4-51, 1997.

&. Bouny, S. Baroghel-bouny, D. Arnaud, M. Henry, D. Carcassès et al., Vieillissement des bétons en milieu naturel : une expérimentation pour le XXI°siècle. III -Propriétés de durabilité des bétons mesurées sur éprouvettes conservées en laboratoire, pp.13-59, 2002.

]. V. Bouny and . Bouny, Les spécificités des bétons à hautes performances -Caractéristiques microstructurales et propriétés relatives à la durabilité évaluées en conditions de laboratoire ou en conditions naturelles, Etudes et Recherches des Laboratoires des Ponts et Chaussées, 2004.

. Bouny, J. Bouny, P. Gawsewitch, K. Belin, S. Ounoughi et al., Vieillissement des bétons en milieu naturel : une expérimentation pour le XXI° siècle. IV -Résultats issus des prélèvements effectués sur les corps d'épreuve de différents sites aux premières échéances de mesure, pp.49-100, 2004.

&. Beaudoin, ]. J. Macinnis, C. Beaudoin, and . Macinnis, The mechanism of frost damage in hardened cement paste, Cement and Concrete Research, vol.4, issue.2, pp.2139-147, 1974.
DOI : 10.1016/0008-8846(74)90128-8

&. Bodnar, ]. R. Vityk, M. O. Bodnar, and . Vityk, Interpretation of microthermometric data for H 2 O-NaCl fluids inclusions, Fluid Inclusions in Minerals, pp.117-130, 1994.

&. Boos, ]. P. Giergiczny, Z. Boos, and . Giergiczny, Testing the frost resistance of concrete with different cement types ? Experience from laboratory and practice, The Silesian University of Technology, Architecture Civil engineering Environement, vol.2, pp.41-52, 2010.

W. C. Borgnakke, Y. Hansen, Z. Kang, E. A. Liu, and . Koenders, Cryogenic Suction Pump Mechanism for Combined Salt and Frost Exposure, Second International Conference on Microstructuralrelated Durability of Cementitious Composites, pp.11-13, 2012.

E. B. Bourdette, J. P. Ringot, and . Ollivier, Modelling of the transition zone porosity, Cement and Concrete Research, vol.25, issue.4, pp.741-751, 1995.
DOI : 10.1016/0008-8846(95)00064-J

&. E. Bourrennane, P. Bourrennane, F. Gouton, M. Truchetet, and . Paindavoine, Généralisation du filtre de Canny-Deriche pour la détection des contours de forme quelconques, GRETSI, 14 ème Colloque sur le traitement du signal et des images, pp.710-713, 1993.

]. G. Cete-de-lyon, M. Orcel, and . Dierkens, Essais d'écaillage interlaboratoire, 2007.

]. N. Cete-de-lyon, S. Moral, . Bouteille-]-g, . Chanvillard-]-o, . F. Coussy-]-g et al., Essais d'écaillage interlaboratoire Rapport technique du CETE de Lyon Matériau béton. Connaissances Générales. Les Cours de l'ENTPE. Ed. Aléas Mechanics and Physics of Porous Solids Profile properties of undeformed first-year sea ice, Cours master M2 SMCD/ENPC, 1988.

&. R. Defay, I. Defay, . Prigogine, D. H. Bellemans, and . Everett, Surface Tension and Absorption, Longmans Ed, pp.243-255, 1966.

&. S. Deville, E. Deville, A. P. Saiz, and . Tomisa, Ice-template porous alumina structure, Acta Materialia, vol.55, 1965.

]. S. Deville and . Deville, Freeze-Casting of Porous Ceramics: A Review of Current Achievements and Issues, Advanced Engineering Materials, vol.554, issue.283, p.3, 2008.
DOI : 10.1002/adem.200700270

]. S. Deville, Metastable and unstable cellular solidification of colloidal suspensions, Eau et aéroports : prise en compte des opérations de viabilité hivernale dans la gestion aéroportuaire. Rapport statistique, pp.966-972, 2003.
DOI : 10.1038/nmat2571

URL : https://hal.archives-ouvertes.fr/hal-00639455

. J. Dipayan and . Dipayan, A Round Robin Teston Measurements of Air Void Parameters in Hardened Concrete by Various Automated Image Analyses and ASTM C457 Methods, Proceedings of the tewentyninth conference on cement microscopy, pp.20-2434, 2007.

]. E. Doehne, Salt weathering: a selective review, Geological Society, London, Special Publications, vol.205, issue.1, pp.51-64, 2002.
DOI : 10.1144/GSL.SP.2002.205.01.05

]. Y. Doucet, L'évolution de la cryoscopie, Le Journal de Physique et le Radium, série VIII, p.01942003010017700, 1942.

]. J. Ollivier and A. Vichot, La durabilité des bétons, Bases et techniques pour la formulation de bétons durables dans leur environnement, 2008.

. P. Duval, M. F. Duval, I. Ashby, and . Andermann, Rate-controlling processes in the creep of polycrystalline ice, The Journal of Physical Chemistry, vol.87, issue.21, pp.214066-4074, 1983.
DOI : 10.1021/j100244a014

&. Eide, ]. L. Martin, S. Eide, and . Martin, The Formation of Brine Drainage Features in Young Sea Ice, Journal of Glaciology, vol.13, issue.70, pp.137-154, 1975.
DOI : 10.1017/S0022143000013460

]. J. Elsen, Automated air void analysis on hardened concrete, Cement and Concrete Research, vol.31, issue.7, pp.1027-1031, 2001.
DOI : 10.1016/S0008-8846(01)00517-8

]. G. Fagerlund, Studies of the destruction mechanisms at freezing of porous materials, Proceedings of the 6th International Congress on the Problems Raised by Frost Action, pp.166-196, 1975.

]. G. Fagerlund, The critical degree of saturation method of assessing the freeze/thaw resistance of concrete, Tentative recommandation, Prepared on behalf of RILEM committee 4 CDC, Matériaux et constructions, pp.58217-229, 1977.

]. G. Fagerlund, The international cooperative test of the critical degree of saturation method of assessing the freeze/thaw resistance of concrete, Matériaux et Constructions, pp.58231-253, 1977.
DOI : 10.1007/BF02478694

]. G. Fagerlund, Frost resistance of high performance concrete, Some theoretical considerations, 1993.

]. G. Fagerlund, Influence of Environmental Factors on the Frost Resistance of Concrete, 1994.

]. G. Fagerlund, Freeze-thaw resistance of concrete, Destruction mechanisms, Concrete technology, Test methods, Quality control, 1995.

]. J. Farran, Contribution minéralogique à l'étude de l'adhérence entre les constituants hydratés des ciments et les matériaux enrobés, Revue des Matériaux de Construction, pp.91155-172, 1956.

&. Feldman, ]. R. Sereda, P. J. Feldman, and . Sereda, A new model for hydrated Portland cement and its practical implications, Engineering Journal, pp.53-59, 1970.

]. T. Fen-chong and . Fen-chong, Durabilité sous percolation et/ou cristallisation confinée en milieu poreux, Mémoire d'Habilitation à Diriger des Recherches, 2008.

&. Germain, ]. O. Pierre, . Germain, . Ch, and . Pierre, Etude et comparaison des méthodes d'essais de résistance des bétons aux cycles de gel-dégel, Actes des 8ème journées Scientifiques du Regroupement Francophone pour la Recherche et la Formation sur le Béton, pp.69-77, 2007.

&. Glen, ]. J. Perutz, M. F. Glen, and . Perutz, Abstract, Journal of Glaciology, vol.81, issue.16, pp.397-403, 1954.
DOI : 10.1038/172721a0

&. Hammer, ]. T. Sellevold, E. J. Hammer, . D. Sellevold-]-t, and . Hanson, Frost resistance of high strength concrete, W.T. Hester Edition, ACI special publication SP1521, ACI Detroit, Evaluation of the RapidAir 457 Air Void Analyzer, pp.457-487, 1990.

]. S. Jacobsen, Scaling and craking in unseal freeze/thaw testing of Portland cement and silica fume concrete, 1995.

&. H. Jakobsen, C. Jakobsen, N. Pade, D. Thaulow, S. Brown et al., Automated air void analysis of hardened concrete ??? a Round Robin study, Cement and Concrete Research, vol.36, issue.8, pp.1444-1452, 2006.
DOI : 10.1016/j.cemconres.2006.03.005

&. M. Jensen, P. F. Jensen, and . Hansen, Water-entrained cement-based materials, Effect of High Dose of Chemical Admixtures on the Freeze-Thaw Durability of Portland Cement Concrete, pp.647-654, 2000.
DOI : 10.1016/S0008-8846(01)00463-X

]. A. Kovacs-]-g, J. C. Letavernier, and . Ozouf, Sea Ice, Part I, Bulk Salinity Versus Ice Floe Thickness La gélifraction des roches et des parois calcaires, Bulletin de l'Association française pour l'étude du quaternaire, Letavernier & OzoufLindmark, 1998] S. Lindmark. Mechanism of Salt Frost Scaling of Portland Cement-bound Materials: Studies and Hypothesis, pp.139-145, 1987.

]. G. Mallet, J. Senaillet, and E. M. Dierkens, Frost action in cement in presence of de-icers, Cement and Concrete Research, vol.6, issue.3, pp.351-356, 1973.

]. J. Marchand, Contribution à l'étude de la détérioration par écaillage du béton en présence de sels fondants, 1993.

&. J. Marchand, E. J. Marchand, M. Sellevold, and . Pigeon, The deicer salt scaling deterioration of concrete ? an overview, Troisième conférence Internationale CANMET/ACI sur la durabilité du béton mai, pp.22-28, 1994.

&. J. Marchand, R. Marchand, R. Pleau, . C. Gagné-]-j, and . Maso, Deterioration of concrete due to freezing and thawing The bond between aggregates and hydrated cement pastes, Proceedings of the 7th international Cement Congress, pp.283-354, 1980.

&. V. Mironenko, G. E. Mironenko, S. A. Boitnottm, R. S. Grant, and . Sletten, Experimental Determination of the Volumetric Properties of NaCl Solutions to 253 K, The Journal of Physical Chemistry B, vol.105, issue.41, pp.9909-9912, 2001.
DOI : 10.1021/jp011356f

&. E. Møen, S. Møen, H. Jacobsen, ]. E. Myhra, . Munch et al., Ice abrasion data on concrete structures -An overview -State of the art, SINTEF report SBF BK A07036 Architectural Control of Freeze-Cast Ceramics Through Additives and Templating, Journal of American Ceramic Society, vol.92, pp.71534-1539, 2007.

. E. Okada, M. Okada, Y. Hiska, K. Kazama, and . Hattori, Freeze?thaw resistance of superplasticized concretes. Development in the use of superplasticizers, ACI SP-68, pp.215-231, 1981.

&. W. Peterson, R. A. Swartz, L. L. Sutter, and T. J. Van-dam, Hardened Concrete Air Void Analysis with a Flatbed Scanner, Transportation Research Record: Journal of the Transportation Research Board, vol.1775, pp.36-43, 2001.
DOI : 10.3141/1775-06

&. Peterson, L. L. Peterson, M. Sutter, and . Radlinski, The Practical Application of a Flatbed Scanner for AirVoid Characterization of Hardened Concrete, Journal of ASTM Intl, vol.6, 2012.

&. Peterson, ]. P. Lundgren, M. Peterson, and . Lundgren, Influence of the minimum temperature on the scaling resistance of concrete, Frost Resistance of Concrete, Proceedings, International RILEM Workshop, 1997.

]. V. Petrenko, Structure of Ordinary Ice Ih. Part I: Ideal Struture of Ice, CRREL Special report, pp.93-118, 1993.

&. Petrenko, ]. V. Whitworth, R. W. Petrenko, . F. Whitworth-]-v, R. W. Petrenko et al., Structure of Ordinary Ice Ih. Part II: Defects in Ice Dislocations and plane Defects, CRREL Special report 94-12 Physics of Ice [Pigeon & Regourd, 1986] M. Pigeon and M. Regourd. The effects of freeze-thaw cycles on the microstructures of hydration product, Pigeon, 1989] M. Pigeon. La durabilité au gel du béton. Materials and Structures/Matériaux et ConstructionPigeon & al., 1996] M. Pigeon, J. Marchand and R. Pleau. Frost resistant concrete, Construction and Building Materials, pp.1-19, 1986.

&. Piltner, ]. R. Monteiro, P. J. Piltner, and . Monteiro, Stress analysis of expansive reactions in concrete, Cement and Concrete Research, vol.30, issue.6, pp.843-848, 2000.
DOI : 10.1016/S0008-8846(00)00266-0

]. R. Pleau, Influence de quelques paramètres sur la durabilité du béton exposé à des cycles de gel-dégel, Thèse présenté à l'école des gradués de l'Université de Laval pour l'obtention du grade de Maître es sciences, 1986.

&. R. Pleau, M. Pleau, J. L. Pigeon, and . Laurencot, Some findings on the usefulness of image analysis for determining the characteristics of the air-void system on hardened concrete, Cement and Concrete Composites, vol.23, issue.2-3, pp.237-246, 2001.
DOI : 10.1016/S0958-9465(00)00079-2

&. Powers, ]. T. Brownyard, T. L. Powers, . C. Brownyard-]-t, . C. Powers-]-t et al., Studies of the physical properties of hardened Portland cement paste The air requirement of frost-resistant concrete, n° 2 to 8 Theory of volume changes in hardened Portland-cement paste during freezing. Proceedings of the Highway Research Board, pp.184-211, 1948.

]. T. Powers, Capillary continuity or discontinuity in cement pastes, Journal of the PCA Research and Development Laboratories, pp.238-286, 1959.

P. Et-orcel, ]. J. Prost, and G. Orcel, Durabilité du béton armé et de ses constituants : maîtrise et approche performantielle, Comportement du béton durci en environnement froid, Opération de recherche n°11B021, 2003.

&. S. Ramachandran, R. F. Ramanchanfran, J. J. Feldman, . M. Beaudoin-]-a, R. D. Ramezanianpour et al., Concrete Science, Treatise on current research. Heyden and Son Ltd Evaluation of Two Automated Methods for Air Void Analysis of Hardened Concrete, Journal of ASTM Intl, vol.7, 1981.

&. C. Robinson, C. S. Robinson, M. I. Boxe, A. J. Guzman, M. R. Colussi et al., Acidity of Frozen Electrolyte Solutions, The Journal of Physical Chemistry B, vol.110, issue.15, pp.7613-7616, 2006.
DOI : 10.1021/jp061169n

]. T. Rønning, Moisture absorption during freeze-thaw and relation to deterioration, Frost resistance of building materials, Proceedings of the 3rd Nordic Research Seminar in Lund, pp.113-118, 1999.

]. H. Saeki, Mechanical Properties Between Ice and Various Materials Used in Hydraulic Structures: The Jin S. Chung Award Lecture, International Journal of Offshore and Polar Engineering, vol.21, pp.81-90, 2010.

&. G. Salzmann, P. G. Salzmann, E. Radaelli, L. F. Mayer, . M. Finney-]-e et al., Ice XV: a new thermodynamically stable phase of ice, Physical Revue Letter Engineering properties of sea ice, Ice Damage to Concrete. CRREL. Special report 98-6, pp.499-53, 1977.

&. Pratt, ]. K. Scrivener, P. L. Prattscrivener, &. Nemati, ]. K. Scrivener et al., The percolation of pore space in the cement paste/aggregate interfacial transition zone of concrete, RILEM TC 108 State of the Art Report, pp.135-175, 1994.

&. Sellevold, ]. E. Farstad, T. Sellevold, and . Farstad, Frost/salt testing of concrete: effect of test parameter and concrete moisture history, Nordic Conrete Research, vol.10, pp.121-138, 1991.

&. Setzer, ]. M. Hartmann, V. Setzer, and . Hartmann, Improved frost/deicing salt resistance testing, Concrete Precast Plant Technology, vol.57, pp.973-82, 1991.

&. Setzer, ]. M. Auberg, R. Setzer, and . Auberg, Testing of Freeze Thaw and Deicing Salt Resistance, CBP Second International Workshop, pp.76-88, 1994.

&. J. Setzer, G. Setzer, D. J. Fagerlund, and . Janssen, CDF test ??? Test method for the freeze-thaw resistance of concrete-tests with sodium chloride solution (CDF), Materials and Structures/Matériaux et Constructions, pp.523-528, 1996.
DOI : 10.1007/BF02485951

]. R. Sierra-]-k and . Snyder, Répartition des différentes formes d'eau dans la structure des pâtes pures des C3S et de ciment Portland, 7th International Congress on the Chemistry of Cement A Numerical Test Of Air Void Spacing Equations, Advanced Cement Based Materials, vol.38, pp.28-44, 1980.

]. W. True, D. Searle, L. Sear, and J. Khatib, Internal comparative test on frost deicing salt resistance, International Workshop on the resistance of concrete to scaling due to freezing in presence of deicing salts, Centre de recherche universitaire sur le béton Voidage assessment of concrete using digital image processing, Magazine of Concrete Research, pp.175-18784, 1993.

&. Utgenannt, ]. P. Petersson, P. E. Utgenannt, and . Petersson, Influence of preconditioning on scaling resistance for different types of test surfaces, Proceeding of the International RILEM workshop on Resistance of Concrete to Freezing and Thawing With or Without De-Icing Chemicals, Germany. Ed. M.J. Setzer, R. Auberg R, vol.34, pp.184-193, 1997.

&. Valenza, ]. J. Scherer, &. G. Valenza, and . Scherer, A review of salt scaling: I. Phenomenology, Cement and Concrete Research, vol.37, issue.7, pp.1007-1021, 2007.
DOI : 10.1016/j.cemconres.2007.03.005

&. Valenza, ]. J. Scherer, &. G. Valenza, and . Scherer, A review of salt scaling: II. Mechanisms, Cement and Concrete Research, vol.37, issue.7, pp.1022-1034, 2007.
DOI : 10.1016/j.cemconres.2007.03.003

&. Verberck, ]. G. Klieger, P. Verberck, and . Klieger, Studies of salt scaling of concrete, Highway Research Board Bulletin, vol.150, pp.1-13, 1957.

]. J. Vuorinen, On determination of effective degree of saturation of concrete, 1973.

&. J. Weissenberger, G. Weissenberger, R. Dieckmann, M. Gradinger, and . Spindler, Sea ice: A cast technique to examine and analyze brine pockets and channel structure, Limnology and Oceanography, vol.37, issue.1, pp.1179-183, 1992.
DOI : 10.4319/lo.1992.37.1.0179

]. L. Wessman, Studies on the frost resistance of natural stone, 1997.

&. J. Wettlaufer, M. G. Wettlauffer, H. E. Worster, and . Huppert, the phase evolution of Young Sea Ice, Geophysical Research Letters, vol.237, issue.10, pp.1251-1254, 1997.
DOI : 10.1029/97GL00877

&. Whiting, ]. D. Stark, D. Whiting, and . Stark, Control of air content in concrete, National Cooperative Highway Research Program, Report, vol.258, 1983.

]. A. Worby, Observing Antarctic sea ice, A practical guide for conducting sea ice observations from vessels in the Antarctic pack ice, A CD?ROM produced for the Antarctic Sea Ice Processes and Climate (ASPeCt) programme of the Scientific Committee for Antarctic Research (SCAR) Global Change and the Antarctic (GLOCHANT) programme, 1999.

&. D. Zalocha, J. Zalocha, . Kasperkiewicz-]-q, and . Zeng, Estimation of the structure of air entrained concrete using a flatbed scanner, Cement and Concrete Research, vol.35, issue.10, pp.2041-2046, 2003.
DOI : 10.1016/j.cemconres.2005.05.004

?. Lotissement and D. Essais-d-', ECAILLAGE Les corps d'épreuve ont été numérotés dans l'ordre de fabrication. La durée totale de fabrication (moulage, vibration et stockage)