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2018 | Supplement | Buchkapitel

Effect of Fiber Orientation and Specimen Thickness on the Tensile Response of Strain Hardening UHPFRC Mixes with Reduced Embodied Energy

verfasst von : Amir Hajiesmaeili, Emmanuel Denarié

Erschienen in: Strain-Hardening Cement-Based Composites

Verlag: Springer Netherlands

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Abstract

Ultra-high performance fiber reinforced concretes (UHPFRC) have demonstrated their potential to contain the explosion of maintenance costs (Economy and Environment) for civil engineering structures, due to their extremely low permeability associated with the outstanding mechanical properties. Substitution of embodied-energy (EE)-costly components of UHPFRC such as clinker and steel fibers, is the next step towards sustainability, to make it even more efficient and more environment-friendly. In this study, a strain hardening UHPFRC mix with two main modifications has been developed in which (1) 75% of steel fibers have been replaced by ultra-high molecular weight polyethylene (UHMWPE, henceforth referred to as PE) fibers and (2) 50% volume of cement type CEM I have been replaced with limestone filler.
The effect of the fiber orientation and the specimen thickness on the mechanical properties of such mixes have been investigated. The mechanical properties have been investigated using direct tensile test, and 4-point bending test. Finally, the dramatic effect of fiber orientation on the ultimate strength and deformability has been demonstrated. Moreover, the results confirm that the specimen thickness affects the deformation capacity of the specimens. Finally, improvements in terms of reduction of EE of the proposed mixes, are highlighted.

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Literatur
Zurück zum Zitat Chen, J., Chanvillard, G.: UHPC composites based on glass fibers with high fluidity, ductility, and durability. In: Ultra-High Performance Concrete and Nanotechnology in Construction. Proceedings of Hipermat, Kassel, pp. 265–272, 7–9 March 2012 Chen, J., Chanvillard, G.: UHPC composites based on glass fibers with high fluidity, ductility, and durability. In: Ultra-High Performance Concrete and Nanotechnology in Construction. Proceedings of Hipermat, Kassel, pp. 265–272, 7–9 March 2012
Zurück zum Zitat De Larrard, F.: Concrete Mixture Proportioning: A Scientific Approach. CRC Press, Boca Raton (1999) De Larrard, F.: Concrete Mixture Proportioning: A Scientific Approach. CRC Press, Boca Raton (1999)
Zurück zum Zitat Denarié, E.: Essais De Caractérisation-Réponse En Traction. Acte De La 2ème Journée D” Étude Du 22 Octobre 2015: Béton fibré ultra-performant-Concevoir, dimensionner, construire. Haute école d” ingénierie et d” architecture Fribourg und Berner Fachhochschule, pp. 25–36 (2015) Denarié, E.: Essais De Caractérisation-Réponse En Traction. Acte De La 2ème Journée D” Étude Du 22 Octobre 2015: Béton fibré ultra-performant-Concevoir, dimensionner, construire. Haute école d” ingénierie et d” architecture Fribourg und Berner Fachhochschule, pp. 25–36 (2015)
Zurück zum Zitat Denarié, E., Kazemi Kamyab, M., Brühwiler, E., Haddad, B.G., Nendaz, S.: Béton fibré ultra performant pour la maintenance, un nouvel élan (2011) Denarié, E., Kazemi Kamyab, M., Brühwiler, E., Haddad, B.G., Nendaz, S.: Béton fibré ultra performant pour la maintenance, un nouvel élan (2011)
Zurück zum Zitat Ferrara, L., Ozyurt, N., di Prisco, M.: High mechanical performance of fibre reinforced cementitious composites: the role of “casting-flow induced” fibre orientation. Mater. Struct. 44, 109–128 (2011)CrossRef Ferrara, L., Ozyurt, N., di Prisco, M.: High mechanical performance of fibre reinforced cementitious composites: the role of “casting-flow induced” fibre orientation. Mater. Struct. 44, 109–128 (2011)CrossRef
Zurück zum Zitat JSCE: Recommendations for Design and Construction Of High Performance Fiber Reinforced Cement Composites With Multiple Fine Cracks. Japan Society of Civil Engineers, Tokyo (2008) JSCE: Recommendations for Design and Construction Of High Performance Fiber Reinforced Cement Composites With Multiple Fine Cracks. Japan Society of Civil Engineers, Tokyo (2008)
Zurück zum Zitat Kamal, A.: Material development of UHP-SHCC for repair applications and its evaluation. Ph.D., Nagoya University (2008) Kamal, A.: Material development of UHP-SHCC for repair applications and its evaluation. Ph.D., Nagoya University (2008)
Zurück zum Zitat Kunieda, M., Denarié, E., Brühwiler, E., Nakamura, H.: Challenges for strain hardening cementitious composites—deformability versus matrix density. HPFRCC5 (2007) Kunieda, M., Denarié, E., Brühwiler, E., Nakamura, H.: Challenges for strain hardening cementitious composites—deformability versus matrix density. HPFRCC5 (2007)
Zurück zum Zitat Li, V.C.: From micromechanics to structural engineering—the design of cementitious composites for civil engineering applications. In: Doboku Gakkai Rombun-Hokokushu/Proceedings of the Japan Society of Civil Engineers, pp. 1–12 (1993) Li, V.C.: From micromechanics to structural engineering—the design of cementitious composites for civil engineering applications. In: Doboku Gakkai Rombun-Hokokushu/Proceedings of the Japan Society of Civil Engineers, pp. 1–12 (1993)
Zurück zum Zitat Neuber, H.: Der zugbeanspruchte Flachstab mit optimalem Querschnittsübergang. Forschung im Ingenieurwesen a 35, 29–30 (1969)CrossRef Neuber, H.: Der zugbeanspruchte Flachstab mit optimalem Querschnittsübergang. Forschung im Ingenieurwesen a 35, 29–30 (1969)CrossRef
Zurück zum Zitat Ranade, R., Li, V.C., Stults, M.D., Heard, W.F., Rushing, T.S.: Composite properties of high-strength, high-ductility concrete. ACI Mater. J. 110, 413–422 (2013) Ranade, R., Li, V.C., Stults, M.D., Heard, W.F., Rushing, T.S.: Composite properties of high-strength, high-ductility concrete. ACI Mater. J. 110, 413–422 (2013)
Zurück zum Zitat Sedran, T.: Rhéologie et rhéométrie des bétons. Application aux bétons autonivelants. Doctorat, Ecole Nationale des Ponts et Chaussées (1999) Sedran, T.: Rhéologie et rhéométrie des bétons. Application aux bétons autonivelants. Doctorat, Ecole Nationale des Ponts et Chaussées (1999)
Zurück zum Zitat Stengel, T., Schießl, P.: Sustainable construction with UHPC—from life cycle inventory data collection to environmental impact assessment. In: Proceedings of the 2nd International Symposium on Ultra High Performance Concrete. Kassel University Press, Kassel, pp. 461–468 (2008) Stengel, T., Schießl, P.: Sustainable construction with UHPC—from life cycle inventory data collection to environmental impact assessment. In: Proceedings of the 2nd International Symposium on Ultra High Performance Concrete. Kassel University Press, Kassel, pp. 461–468 (2008)
Zurück zum Zitat Wuest, J., Denarié, E., Brühwiler, E., Tamarit, L., Kocher, M., Gallucci, E.: Tomography analysis of fiber distribution and orientation in ultra-high performance fibre reinforced concrete with high fiber dosages. Exp. Tech. 33, 50–55 (2009)CrossRef Wuest, J., Denarié, E., Brühwiler, E., Tamarit, L., Kocher, M., Gallucci, E.: Tomography analysis of fiber distribution and orientation in ultra-high performance fibre reinforced concrete with high fiber dosages. Exp. Tech. 33, 50–55 (2009)CrossRef
Metadaten
Titel
Effect of Fiber Orientation and Specimen Thickness on the Tensile Response of Strain Hardening UHPFRC Mixes with Reduced Embodied Energy
verfasst von
Amir Hajiesmaeili
Emmanuel Denarié
Copyright-Jahr
2018
Verlag
Springer Netherlands
DOI
https://doi.org/10.1007/978-94-024-1194-2_38