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hal-01850766v1  Books
T. T. H. NguyenB. BaryThomas de LarrardValérie l'Hostis. A coupled carbonation- rust formation-mechanical damage model for steel corrosion in reinforced concrete
Bicanic, N. and Mang, H. and Meschke, G. and DeBorst, R. Crc Press-Taylor & Francis Group, 2014, 978-1-138-02642-1 978-1-315-76203-6
hal-01703275v1  Conference papers
Farid BenboudjemaLaurie LacarriereAgnieszka KnoppikMateusz Wyrzykowski. MODELING OF CONCRETE AT EARLY AGE -BENCHMARK CARRIED OUT WITHIN COST TU 1404
JCI-RILEM International Workshop on "Control of Cracking of Mass Concrete and Related Issues Concerning Early Age Cracking of Concrete Structures" - CONCRACK5-, Apr 2017, Tokyo, Japan
hal-01724670v1  Journal articles
Stéphane MultonJf SeignolF Toutlemonde. Structural behavior of concrete beams affected by alkali-silica reaction
Materials Journal, American Concrete Institute, 2005, 102 (2), pp.67--76
hal-01849710v1  Journal articles
Arnaud CastelInamullah KhanRaoul FrançoisRaymond Ian Gilbert. Modeling Steel Concrete Bond Strength Reduction Due to Corrosion
Structural Journal, American Concrete Institute, 2016, 113 (5), pp.973--982. ⟨10.14359/51688925⟩
hal-01849766v1  Books
Laurie LacarriereAlain Sellier. Numerical Experimentation on Thermo-Hydro Mechanical Behavior of Massive Reinforced Concrete Structures at an Early Age
Hellmich, C. and Pichler, B. and Kollegger, J. Amer Soc Civil Engineers, 2015, 978-0-7844-7934-6
hal-02335446v1  Journal articles
Arnaud CastelThierry VidalRaoul François. Bond and cracking properties of self-consolidating concrete
Construction and Building Materials, Elsevier, 2010, 24 (7), pp.1222-1231. ⟨10.1016/j.conbuildmat.2009.12.017⟩
hal-01849705v1  Journal articles
Wenjun ZhuRaoul François. Prediction of the residual load-bearing capacity of naturally corroded beams using the variability of tension behaviour of corroded steel bars
Structure and Infrastructure Engineering, Taylor & Francis (Routledge): STM, Behavioural Science and Public Health Titles, 2016, 12 (2), pp.143--158. ⟨10.1080/15732479.2014.996165⟩
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