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Articles

Application of thermo-hydro-chemo-mechanical model for early age behaviour of concrete to experimental massive reinforced structures with strain–restraining system

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Pages 814-827 | Received 19 Jul 2013, Accepted 06 Feb 2014, Published online: 14 Mar 2014

References

  • Azenha, M., Faria, R., & Ferreira, D. (2009). Identification of early-age concrete temperatures and strains: Monitoring and numerical simulation. Cement and Concrete Composites, 31, 369–378.10.1016/j.cemconcomp.2009.03.004
  • Azenha, M., Sousa, C., Faria, R., & Neves, A. (2011). Thermo-hygro-mechanical modelling of self-induced stresses during the service life of RC structures. Engineering Structures, 33, 3442–3453.10.1016/j.engstruct.2011.07.008
  • Benboudjema, F., & Torrenti, J.-M. (2008). Early-age behaviour of concrete nuclear containments. Nuclear Engineering and Design, 238, 2495–2506.10.1016/j.nucengdes.2008.04.009
  • Bertagnoli, G., Mancini, G., & Tondolo, F. (2011). Early age cracking of massive concrete piers. Magazine of Concrete Research, 83, 723–736.
  • Buffo-Lacarrière, L. (2010). Support au montage et à la définition du dossier du benchmark Concrack [Control of cracking in RC structures]. Report of French National Project CEOS.fr (document written in English). 16 p.
  • Buffo-Lacarrière, L., & Sellier, A. (2011). Chemo-mechanical modeling requirements for the assessment of concrete structure service life. Journal of Engineering Mechanics, 137, 625–633.10.1061/(ASCE)EM.1943-7889.0000261
  • Buffo-Lacarrière, L., Sellier, A., Escadeillas, G., & Turatsinze, A. (2007). Multiphasic finite element modeling of concrete hydration. Cement and Concrete Research, 37, 131–138.10.1016/j.cemconres.2006.11.010
  • Buffo-Lacarrière, L., Sellier, A., Turatsinze, A., & Escadeillas, G. (2011). Finite element modelling of hardening concrete: Application to the prediction of early age cracking for massive reinforced structures. Materials and Structures, 44, 1821–1835.10.1617/s11527-011-9740-y
  • Faria, R., Azenha, M., & Figueiras, J. A. (2006). Modelling of concrete at early ages: Application to an externally restrained slab. Cement and Concrete Composites, 28, 572–585.10.1016/j.cemconcomp.2006.02.012
  • Hillerborg, A., Modéer, M., & Petersson, P. (1976). Analysis of crack formation and crack growth in concrete by means of fracture mechanics and finite elements. Cement and Concrete Research, 6, 773–781.10.1016/0008-8846(76)90007-7
  • Julliot, M., & Mary-Dippe, C. (2010). Essais de caracterisation de 2 bétons de classe C50/60 et C30/37 [Characterisation test report for CEOS concrete C50/60 and C30/37] (CEBTP Report 21).
  • Kachanov, L. (1986). Introduction to continuum damage mechanic. Dordrecht: Martinus Nijhoff. 135 p.10.1007/978-94-017-1957-5
  • Kolani, B. (2012). Comportement au jeune âge des structures en béton armé à base de liants composés aux laitiers [Early age behaviour of reinforced concrete structures casted with slab blended cement] (Unpublished PhD thesis). Université de Toulouse (in French).
  • Kolani, B., Buffo-Lacarrière, L., Sellier, A., Escadeillas, G., Boutillon, L., & Linger, L. (2012). Hydration of slag-blended cements. Cement and Concrete Composites, 34, 1009–1018.10.1016/j.cemconcomp.2012.05.007
  • Lackner, R., & Mang, H. A. (2004). Chemoplastic material model for the simulation of early-age cracking: From the constitutive law to numerical analyses of massive concrete structures. Cement and Concrete Composites, 26, 551–562.10.1016/S0958-9465(03)00071-4
  • 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. Materials and Structures, 44, 1629–1639.10.1617/s11527-011-9723-z
  • Mc Adams, W. H. (1954). Heat transmission. New York, NY: M. B. Company.
  • Schutter, G. (2002). Fundamental study of early age concrete behaviour as a basis for durable concrete structures. Materials and Structures, 35, 15–21.10.1007/BF02482085
  • Schutter, G., & Taerwe, L. (1996). Degree of hydration-based description of mechanical properties of early age concrete. Materials and Structures, 29, 335–344.10.1007/BF02486341
  • Sellier, A., & Buffo-Lacarrière, L. (2009). Towards a simple and unified modelling of basic creep, shrinckage and drying creep of concrete. European Journal of Environmental and Civil Engineering, 13, 1161–1182.10.1080/19648189.2009.9693184
  • Sellier, A., Casaux-Ginestet, G., Buffo-Lacarrière, L., & Bourbon, X. (2013a). Orthotropic damage coupled with localized crack reclosure processing. Part I: Constitutive laws. Engineering Fracture Mechanics, 97, 148–167.10.1016/j.engfracmech.2012.10.012
  • Sellier, A., Casaux-Ginestet, G., Buffo-Lacarrière, L., & Bourbon, X. (2013b). Orthotropic damage coupled with localized crack reclosure processing. Engineering Fracture Mechanics, 97, 168–185.10.1016/j.engfracmech.2012.10.016

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