Civil Engineering Reference
In-Depth Information
De Belie N, Debruyckere M, Vannieuwenburg D and Deblaere B (1997c), Attack of
concrete floors in pig houses by feed acids: Influence of fly ash addition and cement-
bound surface layers, Journal of Agricultural Engineering Research , 68 , 101-108.
10.1006/jaer.1997.0185
De Belie N, Lenehan J J, Braam C R, Svennerstedt B, Richardson M and Sonck B (2000),
Durability of building materials and components in the agricultural environment, Part
III: Concrete structures, Journal of Agricultural Engineering Research , 76 , 3-16.
Dhir R K and Byars E A (1993a), Pulverized fuel-ash concrete - intrinsic permeability,
ACI Materials Journal , 90 , 571-580.
Dhir R, Hewlett P and Chan Y (1991), Near-surface characteristics of concrete: Abrasion
resistance, Materials and Structures , 24 , 122-128. 10.1007/bf02472473
Dhir R K, Hewlett P C and Chan Y N (1989), Near surface characteristics of concrete:
Intrinsic permeability, Magazine of Concrete Research , 41 , 87-97.
Dhir R K and Byars E A (1993b), PFA concrete: chlorides diffusion rates, Magazine of
Concrete Research , 45 , 1-9.
Dhir R K, El-Mohr M A K and Dyer T D (1996), Chloride binding in GGBS concrete,
Cement and Concrete Research , 26 , 1767-1773.
Dhir R K, El-Mohr M A K and Dyer T D (1997), Developing chloride resisting concrete
using PFA, Cement and Concrete Research , 27 , 1633-1639.
Diab A M, Awad A E M, Elyamany H E, Elmoty A and Elmoty M A (2008a), Blended
cement is a bad recommendation for magnesium sulfate attack, in Microstructure Related
Durability of Cementitious Composites , Vol. 1/2, RILEM Publications, 445-454.
Diab A M, Awad A E M, Elyamany H E and Elmoty A (2008b), Magnesium sulfate
resistance of silica fume concrete specimens and R.C. columns, in Microstructure Related
Durability of Cementitious Composites , Vol. 1/2, RILEM Publications, 859-868.
Diamond S (1986), Chloride concentrations in concrete pore solutions resulting from calcium
and sodium chloride admixtures, Cement, Concrete and Aggregates , 8 , 97-102.
Diamond S (1989), ASR - Another look at mechanisms, in 8th International Conference
on Alkali-Aggregate Reaction in Concrete , 83-94.
Diamond S, Sahu S and Thaulow N (2004), Reaction products of densified silica fume
agglomerates in concrete, Cement and Concrete Research , 34 , 1625-1632.
Duchesne J and Bérubé M A (1994a), The effectiveness of supplementary cementing
materials in suppressing expansion due to ASR: Another look at the reaction mechanisms
part 1: Concrete expansion and portlandite depletion, Cement and Concrete Research ,
24 , 73-82.
Duchesne J and Bérubé M A (1994b), The effectiveness of supplementary cementing
materials in suppressing expansion due to ASR: Another look at the reaction mechanisms
part 2: Pore solution chemistry, Cement and Concrete Research , 24 , 221-230.
Duchesne J and Bérubé M A (2001), Long-term effectiveness of supplementary
cementing materials against alkali-silica reaction, Cement and Concrete Research ,
31 , 1057-1063.
Dunster A M (1989), An investigation of the carbonation of cement paste using
trimethylsilylation, Advances in Cement Research , 2 , 99-106.
Durning T A and Hicks M C (1991), Using microsilica to increase concrete's resistance
to aggressive chemicals, Concrete International , 13 , 42-48.
Elahi A, Basheer P A M, Nanukuttan S V and Khan Q U Z (2010), Mechanical and
durability properties of high performance concretes containing supplementary
cementitious materials, Construction and Building Materials , 24 , 292-299.
Escadeillas G and Hornain H (2008), La durabilité des bétons vis-a-vis des environnements
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