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Documents dont l'auteur est "Brühwiler, Eugen"

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Nombre de documents: 6

B

Ben Ftima, M., Sadouki, H., & Brühwiler, E. (mai 2016). Development of a computational multi-physical framework for the use of nonlinear explicit approach in the assessment of concrete structures affected by alkali-aggregate reaction [Communication écrite]. 9th International Conference on Fracture Mechanics of Concrete and Concrete Structures (FraMCoS-9), Berkeley, California. Lien externe

C

Conciatori, D., Laferrière, F., & Brühwiler, E. (2010). Comprehensive Modeling of Chloride Ion and Water Ingress Into Concrete Considering Thermal and Carbonation State for Real Climate. Cement and Concrete Research, 40(1), 109-118. Lien externe

Charron, J.-P., Denarié, E., & Brühwiler, E. (2008). Transport Properties of Water and Glycol in an Ultra High Performance Fiber Reinforced Concrete (UHPFRC) Under High Tensile Deformation. Cement and Concrete Research, 38(5), 689-698. Lien externe

H

Habel, K., Charron, J.-P., Denarié, E., & Brühwiler, E. (2006). Autogenous Deformations and Viscoelasticity of UHPFRC in Structures. Part I: Experimental Results. Magazine of Concrete Research, 58(3), 135-145. Lien externe

Habel, K., Charron, J.-P., Denarié, E., & Brühwiler, E. (2006). Autogenous Deformations and Viscoelasticity of UHPFRC in Structures. Part II: Numerical Modelling. Magazine of Concrete Research, 58(3), 147-156. Lien externe

T

Tran, D. A., Shen, X., Sorelli, L., Ben Ftima, M., & Brühwiler, E. (2023). Predicting the effect of non-uniform fiber distribution on the tensile response of ultra-high-performance fiber reinforced concrete by magnetic inductance-based finite element analysis. Cement and Concrete Composites, 135, 104810 (47 pages). Lien externe

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