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Experimental bending tests on filler beam section with SFRC

 Experimental bending tests on filler beam section with SFRC
Auteur(s): , , , ,
Présenté pendant IABSE Symposium: Construction’s Role for a World in Emergency, Manchester, United Kingdom, 10-14 April 2024, publié dans , pp. 1182-1188
DOI: 10.2749/manchester.2024.1182
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Filler beam decks are a traditional steel concrete composite deck for railway and roadway bridges which has been in use since decades without major changes in its configuration. The use of steel- f...
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Détails bibliographiques

Auteur(s): (Structural Engineering and Composite Structures, University of Luxemburg, Luxembourg)
(Structural Engineering and Composite Structures, University of Luxemburg, Luxembourg)
(University of Castilla La Mancha, Ciudad Real, Spain)
(University of Castilla La Mancha, Ciudad Real, Spain)
(University of Castilla La Mancha, Ciudad Real, Spain)
(ArcelorMittal Fibres, Luxembourg, Luxembourg)
Médium: papier de conférence
Langue(s): anglais
Conférence: IABSE Symposium: Construction’s Role for a World in Emergency, Manchester, United Kingdom, 10-14 April 2024
Publié dans:
Page(s): 1182-1188 Nombre total de pages (du PDF): 7
Page(s): 1182-1188
Nombre total de pages (du PDF): 7
DOI: 10.2749/manchester.2024.1182
Abstrait:

Filler beam decks are a traditional steel concrete composite deck for railway and roadway bridges which has been in use since decades without major changes in its configuration. The use of steel- fibre reinforced concrete (SFRC) as complement to the traditional reinforcement is investigated to reach a more optimized, environmental-neutral and resilient structural form.

In this frame a large experimental campaign has been initiated, whereas in this paper the monotonic bending beam tests will be discussed. In term of resistance the major difference is the superior ductility of SFRC which permits to fully exploit the resistance of the steel profile. On the other side, the presence of the steel fibres highly enhances the tensile properties of the concrete matrix contributing to a significantly higher bending stiffness.

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