ANALYTICAL MODEL FOR THE PREDICTION OF THE ELASTIC RESPONSE OF CURVED T-STUBS

Author:

Mudrov Andrej1,Jaspart Jean-Pierre2,Corman Adrien2,Šapalas Antanas1

Affiliation:

1. Department of Steel and Composite Structures, Faculty of Civil Engineering, Vilnius Gediminas Technical University, Saulėtekio al. 11, LT-10223, Vilnius, Lithuania

2. Department ArGEnCo, University of Liège, Quartier Polytech 1, 9 Allée de la Découverte, 4000 Liège, Belgium

Abstract

Composite steel-concrete columns utilise the advantages of both materials, by combining high strength and ductility of steel with the compressive strength of the concrete. But the wide adaptation of composite structures is limited, mainly because of the lack of cheap and easy to construct connections, as many of which require costly and timeconsuming on-site welding, when circular concrete filled steel tubes (CFST) are adopted. New connections, like those incorporating the use of blind bolts and curved end-plates, may represent a valuable alternative. Such joints can be adapted to circular CFST to eliminate on-site welding, but they require the creation of new curved T-stub components. This paper proposes an analytical model for the evaluation of bolt forces in the curved T-stubs within the elastic range. The model is then validated against experimental results of joints between circular CFST columns and steel beams, with both preloaded and snug tightened bolts. Analytical model shows good agreement with experimental data, but needs further development to take into account the prying forces.

Publisher

Vilnius Gediminas Technical University

Subject

Strategy and Management,Civil and Structural Engineering

Reference9 articles.

1. Analytical behavior of connections to concrete-filled steel tubes

2. European Committee for Standardization. (2005). Eurocode 3: Design of steel structures – Part 1-8: Design of joints (EN 19931-8:2005/AC:2009).

3. Moment-resisting connections for composite frames;Gardner, A. P., & Goldsworthy, H. M.;Proceedings of Conference on Mechanics of Structures & Materials,1999

4. Moment Resisting Connection with Curved Endplates: Behaviour Study

5. Oktavianus, Y., Goldsworthy, H. M., & Gad, E. F. (2014, 21–23 November). Behaviour of headed anchor blind bolts embedded in concrete filled circular hollow section column. In Australian Earthquake Engineering Society 2014 Conference, Lorne, Victoria.

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