Analysis of interactions between damage and basic creep of HPC and HPFRC heated between 20 and 80 °C
Tóm tắt
Từ khóa
Tài liệu tham khảo
Acker P (2003) Sur les origines du retrait et du fluage du béton (in French). “About the origins of shrinkage and creep of concrete”. Revue Française de Génie Civil 7(6):761–776
Andra (2005) Référentiel des matériaux de stockage de déchets à haute activité et à vie longue (in French). “Referential of materials of storage for High Level Long-Life Nuclear Wastes”. Ref C RP ASCM.04.0015.A., editions Andra
ASTM C512-02 (2005) Standard test method for creep of concrete in compression. ASTM International, West Conshohocken. doi: 10.1520/C0512-02
Bazant ZP, Cusatis G, Cedolin L (2004) Temperature effect on concrete creep modeled by microprestress-solidification theory. J Eng Mech ASCE 130(6):691–699
Briffaut M (2010) Etude de la fissuration au jeune âge des structures massives: influence de la vitesse de refroidissement, des reprises de bétonnage et des armatures (in French). “Study of early age cracking of massive structures: influence of cooling rate, concrete construction joint and reinforcement”. PhD thesis, Ecole Nationale Supérieure de Cachan, France
Browne RD (1967) Properties of concrete in reactor vessels. In: Proceedings of conference on prestressed concrete pressure vessels, group C. Institution of Civil Engineers, London, pp 11–31
Camps G, Turatsinze A, Sellier A, Escadeillas G, Bourbon X (2008) Steel-fibre-reinforcement and hydration coupled effects on concrete tensile behaviour. Eng Fract Mech 75(18):5207–5216
de Larrard T (2010) Variabilité des propriétés du béton: caractérisation expérimentale et modélisation probabiliste de la lixiviation (in French). “Variability of properties of concrete: experimental characterization and probabilistic modeling of leaching”. PhD thesis, Ecole Nationale Supérieure de Cachan, France
Hager IG (2004) Comportement à haute température des bétons à haute performance—évolution des principales propriétés mécaniques (in French). “High temperature behavior of high performance concrete—evolution of the main mechanical properties”. PhD thesis, Ecole Nationale des Ponts et Chaussées de Paris et Ecole Polytechnique de Cracovie
Hager IG, Pimienta P (2005) Transient thermal strains of high performance concretes. In: Pijaudier-Cabot G et al (eds) Creep, shrinkage and durability of concrete and concrete structures (CONCREEP 7). Hermès Science Publishing. Nantes, pp 460–471
Hannant DJ (1967) Strain behaviour of concrete up to 95 °C under compressive stresses. In: Proceedings of conference on prestressed concrete pressure vessels, group C. Institution of Civil Engineers. London, pp 57–71
Hansen TC, Eriksson L (1966) Temperature change effect on behaviour of cement paste, mortar and concrete under load. ACI J 63(4):489–502
Jianyong L, Yan Y (2001) A study on creep and drying shrinkage of high performance concrete. Cem Concr Res 31:1203–1206
Kommendant GJ, Polivka M, Pirtz D (1976) Study of concrete properties for prestressed concrete reactor vessels, final report-part II, Creep and strength characteristics of concrete at elevated temperatures. In: Rep. No. UCSESM 76-3 Prepared for General Atomic Company, Department of Civil Engineering, University of California, Berkeley
Ladaoui W (2010) Etude expérimentale du comportement Thermo-Hydro-Mécanique à long terme des BHP destinés aux ouvrages de stockage des déchets radioactifs (in French). “Experimental study of long-term thermo-hydro-mechanical behavior of HPC envisioned for storage structures of radioactive wastes”. PhD thesis, Université de Toulouse, France
Ladaoui W, Vidal T, Sellier A, Bourbon X (2011) Effect of a temperature change from 20 to 50 °C on the basic creep of HPC and HPFRC. Mater Struct 44(9):1629–1639
McDonald JE (1975) Time-dependent deformation of concrete under multiaxial stress conditions. In: Technical Report C-75-4 Concrete Laboratory, US Army Engineer Waterways Experiment Station, Vicksburg, October 1975. Oak Ridge National Laboratory, Oak Ridge, operated by Union Carbide Corporation for the U.S. Energy Research and Development Administration
Muñoz P (2000) Rhéologie des bétons durcis: approche couplée de la modélisation des retraits et fluages de Bétons à Hautes et Très Hautes Performances (in French). “Rheology of hardened concretes: coupled approach of modeling of shrinkages and creep of high and very high performance concretes”. PhD thesis, INSA Toulouse, France
Nasser KW, Marzouk HM (1981) Creep of concrete at temperatures from 70 to 450 F under atmospheric pressure. ACI J 78(13):147–150
Nasser KW, Neville AM (1965) Creep of concrete at elevated temperatures. ACI J Proc 62(12):1567–1579
Persson B. (1998) Seven-year study on the effect of silica fume in concrete, Advn. Cem. Based Mater, pp 139–155
Petkovski M, Crouch RS (2008) Strains under transient hygro-thermal states in concrete loaded in multiaxial compression and heated to 250 °C. Cem Concr Res 38(4):586–596
Ranaivomanana H (2010) Transferts dans les milieux poreux réactifs non saturés : application à la cicatrisation de fissure dans les matériaux cimentaires par carbonatation (in French). “Transfer in porous media unsaturated reagents: application to the healing of cracks in cementitious materials by carbonation”. PhD thesis, Université de Toulouse, France
RILEM TC 129-MHT (January–February 2000) Test methods for mechanical properties of concrete at high temperatures, part 8: steady-state creep and creep recovery for service and accident conditions. Mater Struct 33(1):6–13
RILEM TC 129-MHT (May 2000) Test methods for mechanical properties of concrete at high temperatures, part 9: shrinkage for service and accident conditions. Mater Struct 33(4):224–228
Torrenti JM, Nguyen VH, Colina H, Le Maou F, Benboudjema F, Deleruyelle F (2008) Coupling between leaching and creep of concrete. Cem Concr Res 38(6):816–821
York GP, Kennedy TW, Perry ES (1970) Experimental investigation of creep in concrete subjected to multiaxial compressive stresses and elevated temperatures. In: Research Rep. 2864-2 prepared for Oak Ridge National Laboratory, Department of Civil Engineering, University of Texas, Austin
Zielinski JL, Sadowski A (1973) The influence of moisture content on the creep of concrete at elevated temperatures. In: Jaeger TA (ed) Proceedings of 2nd international conference on structural mechanics in reactor technology. Commission of European Communities, Berlin, pp 1–8