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Numerical Investigation of Steel-LVL Timber Composite Beams

Authors :
University of Luxembourg: ArcelorMittal Chair of Steel Construction [research center]
Prefalux [sponsor]
ArcelorMittal [sponsor]
Fonds National de la Recherche - FNR [sponsor]
Romero, Alfredo
Yang, Jie
Hanus, François
Odenbreit, Christoph
University of Luxembourg: ArcelorMittal Chair of Steel Construction [research center]
Prefalux [sponsor]
ArcelorMittal [sponsor]
Fonds National de la Recherche - FNR [sponsor]
Romero, Alfredo
Yang, Jie
Hanus, François
Odenbreit, Christoph
Publication Year :
2021

Abstract

In the last years, new connectors of steel-concrete composite flooring systems have been developed and investigated to enhance the circularity and standardisation of building components. Recent studies showed that timber can be used as an alternative to the concrete slab in hybrid structures. However, the knowledge in steel-timber composite flooring systems is still very limited. This contribution presents numerical investigations of steel-LVL timber composite beams. The load deformation behaviour was determined through 3D finite element models. The design resistance of the composite beams was estimated analytically through a strain-controlled approach. The results of this study show that the resistances obtained in the numerical models and the strain-controlled approach are in good agreement. Moreover, obtained deflections and slip values were given at ultimate load.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1314858099
Document Type :
Electronic Resource