Civil Engineering Reference
In-Depth Information
Carles-Gibergues A and Hornain H (2008), La durabilité des bétons face aux réactions
de gonflement endogènes, La durabilité des bétons - Bases scientifiques pour la
formulation de bétons durables dans leur environnement . Paris, Presses de l'école
nationale des Ponts et Chaussées (ENPC).
Carles-Gibergues A, Cyr M, Moisson M and Ringot E (2008), A simple way to mitigate
alkali-silica reaction, Materials and Structures , 41 , 73-83. 10.1617/s11527-006-
9220-y
Cengiz Duran A (2003), Accelerated carbonation and testing of concrete made with fly
ash, Construction and Building Materials , 17 , 147-152.
Chang Z T, Song X J, Munn R and Marosszeky M (2005), Using limestone aggregates
and different cements for enhancing resistance of concrete to sulphuric acid attack,
Cement and Concrete Research , 35 , 1486-1494. 10.1016/j.cemconres.2005.03.006
Chatterji S (1979), The role of Ca(OH)2 in the breakdown of Portland cement concrete
due to alkali-silica reaction, Cement and Concrete Research , 9 , 185-188.
Chatterji S and Kawamura M (1992), A critical reappraisal of ion diffusion through
cement based materials. Part 1: Sample preparation, measurement technique and
interpretation of results, Cement and Concrete Research , 22 , 525-530.
Chatterji S, Thaulow N, Christensen P and Jensen A D (1983), Studies of alkali-silica
reaction with special reference to prevention of damage to concrete. A preliminary
study, in 6th International Conference on Alkali-Aggregate Reaction in Concrete ,
253-257.
Cheng A, Huang R, Wu J-K and Chen C-H (2005), Influence of GGBS on durability
and corrosion behavior of reinforced concrete, Materials Chemistry and Physics , 93 ,
404-411.
Cohen M D and Bentur A (1988), Durability of Portland cement-silica fume pastes in
magnesium and sodium sulfate solutions, ACI Materials Journal , 85 , 148-157.
Collepardi M, Collepardi S, Ogoumah Olagot J J, and Simonelli F (2004), The influence
of slag and fly ash on the carbonation of concretes, in SP-221: Eighth CANMET/ACI
Intl Conf on Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete , ACI,
483-494.
Courard L, Darimont A, Schouterden M, Ferauche F, Willem X and Degeimbre R (2003),
Durability of mortars modified with metakaolin, Cement and Concrete Research , 33 ,
1473-1479.
Cowie J and Glasser F P (1991), The reaction between cement and natural waters containing
dissolved carbon dioxide, Advances in Cement Research , 4 , 119-134.
Cwirzen A and Penttala V (2005), Aggregate-cement paste transition zone properties
affecting the salt-frost damage of high-performance concretes, Cement and Concrete
Research , 35 , 671-679.
De Belie N (1997), On-farm trial to determine the durability of different concrete slats for
fattening pigs, Journal of Agricultural Engineering Research , 68 , 311-316. 10.1006/
jaer.1997.0209
De Belie N, Verselder H J, Deblaere B, Vannieuwenburg D and Verschoore R (1996),
Influence of the cement type on the resistance of concrete to feed acids, Cement and
Concrete Research , 26 , 1717-1725. 10.1016/s0008-8846(96)00155-x
De Belie N, De Coster V and Van Nieuwenburg D (1997a), Use of fly ash or silica fume
to increase the resistance of concrete to feed acids, Magazine of Concrete Research ,
49 , 337-344.
De Belie N, Debruyckere M, Van Nieuwenburg D and De Blaere B (1997b), Concrete
attack by feed acids: Accelerated tests to compare different concrete compositions
and technologies, ACI Materials Journal , 94 , 546-554.
￿ ￿ ￿ ￿ ￿ ￿
Search WWH ::




Custom Search