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Documents dont l'auteur est "Rossi, Pierre"

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Nombre de documents: 9

B

Ben Ftima, M., Chéruel, A., & Argouges, M. (juillet 2022). Multi-physical Simulation of Concrete Hydraulic Facilities Affected by Alkali-Aggregate Reaction: From Material to Structure [Communication écrite]. RILEM International Conference on Numerical Modeling Strategies for Sustainable Concrete Structures (SSCS), 2022, Marseille, France. Lien externe

Balazs, G., Boshoff, J., di Prisco, M., Kanstad, T., Kusterle, W., Massicotte, B., Plizzari, G., Rossi, P., Serna Ros, P., Soetens, T., Tvede-Jensen, B., & Van den Bos, A. (2022). SLS and ULS. Bulletin - FIB, 109-161. Lien externe

D

Daviau-Desnoyers, D., Charron, J.-P., Massicotte, B., Rossi, P., & Tailhan, J.-L. (2016). Characterization of macrocrack propagation under sustained loading in steel fibre reinforced concrete. Materials and Structures, 49(3), 969-982. Lien externe

Daviau-Desnoyers, D., Charron, J.-P., Massicotte, B., Rossi, P., & Tailhan, J.-L. (2016). Influence of Reinforcement Type on Macrocrack Propagation under Sustained Loading in Steel Fibre Reinforced Concrete. Structural Concrete, 17(5), 736-746. Lien externe

M

Massicotte, B., Lagier, F., Zahedi, M., & Bastide, R. (juillet 2022). Contribution of Rib-scale Modelling to Study the Bond Mechanisms of Reinforcement in UHPFRC [Communication écrite]. RILEM International Conference on Numerical Modeling Strategies for Sustainable Concrete Structures (SSCS), 2022, Marseille, France. Lien externe

Massicotte, B., Rossi, P., & Serna Ros, P. (2022). Fundamentals. Bulletin - FIB, 22-37. Lien externe

R

Rastiello, G., Desmettre, C., Tailhan, J.-L., Rossi, P., Charron, J.-P., & Dal Pont, S. (2016). Modeling of fluid leakage through multi-cracked RC structural elements using a numerical probabilistic cracking approach. Materials and Structures, 49(8), 3095-3108. Lien externe

Rossi, P., Charron, J.-P., Bastien-Masse, M., Tailhan, J.-L., Le Maou, F., & Ramanish, S. (2014). Tensile basic creep versus compressive basic creep at early ages: comparison between normal strength concrete and a very high strength fibre reinforced concrete. Materials and Structures, 47(10), 1773-1785. Lien externe

T

Tailhan, J.-L., Rossi, P., & Daviau-Desnoyers, D. (2015). Probabilistic numerical modelling of cracking in steel fibre reinforced concretes (SFRC) structures. Cement and Concrete Composites, 55, 315-321. Lien externe

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