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Abstrakty
This paper presents a comparative analysis of shear resistance in the interface between two concrete parts of concrete composite beam. The construction joint was performed as indented one in accordance with Eurocode 2 and fib Model Code 2010. The numerical calculation results were confronted with the actual results of tests of a composite beam subjected to 4-point bending. The displacement values of tested element were obtained using dial sensors and the digital image correlation method (DIC). The analysis shows that the recommendations of Eurocode 2-1-1 and fib Model Code 2010 do not reflect the actual behavior of concrete composite beam with indented surface.
Czasopismo
Rocznik
Tom
Strony
93--105
Opis fizyczny
Bibliogr. 14 poz., rys., tab., wykr.
Twórcy
autor
- Warsaw University of Technology, Faculty of Civil Engineering, Mechanics and Petrochemistry, Płock, Poland
autor
- Warsaw University of Technology, Faculty of Civil Engineering, Mechanics and Petrochemistry, Płock, Poland
autor
- Lublin University of Technology, Civil Engineering and Architecture Faculty, Lublin, Poland
Bibliografia
- 1. Aggelis, DG, Verbruggen, S., Tsangouri, E., Tysmans, T. and Van Hemelrijck, D. 2013. Characterization of mechanical performance of concrete beams with external reinforcement by acoustic emission and digital image correlation. Construction and Building Materials 47, 1037–1045.
- 2. GOM Corellate [Access: 15.12.2018], [Online:] http://www.gom.com/3dsoftware/gom-correlate/download.html.
- 3. Halicka, A. 2007. A study of the stress-strain state in the interface and support zones of composite structures with shrinkable and expansive concretes (in Polish). Lublin: Wydawnictwo Uczelniane.
- 4. Halicka, A. and Jabłoński, Ł. 2015. The joint of two concrete members of different ages – parameters and capacity according to fib Model Code 2010 (in Polish). Inżynieria i Budownictwo 7, 346-350.
- 5. Jabłoński, Ł 2018, Influence of surface parameters on static performance of concrete composite t-shaped beams (in Polish). Lublin: Wydawnictwo Uczelniane.
- 6. Kowalewski, ZL, Dietrich, L., Kopeć, M., Szymczak, T. and Grzywna, P. 2016. Modern optical systems in mechanical testing - construction, operations, applications (in Polish). XII Seminarium Nieniszczące Badania Materiałowe, Zakopane, Polska, Marzec, 16-18, 1-32.
- 7. Krawczyk, Ł, Gołdyn, M and Urban, T 2017. About inaccuracies of dic system (in Polish). Journal of Civil Engineering, Environment and Architecture 64, 259-270.
- 8. PN-EN 1992-1-1:2008 Eurokod 2: Design of concrete structures – Part 1-1: General rules and rules for buildings.
- 9. PN-EN 206+A1:2016-12, Concrete - Specification, Performance, Production and Conformity.
- 10. Walraven, JC, and Ajdukiewicz, A (tł.) 2014. fib Model Code 2020 for concrete structures. Kraków: Wydawnictwo Polski Cement.
- 11. Sadowski, G and Wiliński, P. 2017. Study of influence of surface shape on deflection concrete beams cast in two stages (in Polish). Inżynieria i Budownictwo 4, 206-210.
- 12. Sadowski, G and Wydra, M. 2019. Comparison of methods applied to analysis of crack propagation in reinforced concrete composite beam (in Polish). Acta Scientiarum Polonorum Architectura 1, 3-12.
- 13. Szczecina, M, Tworzewski, P. and Uzarska, I. 2018. Numerical modeling of reinforced concrete beams, including the real position of reinforcing bars. Structure and Environment 1, 28-38.
- 14. Tsangouri, E, Aggelis, DG, Van Tittelboom, K., De Belie, N. and Van Hemelr. 2013. Detecting the activation of a self-healing mechanism in concrete by acoustic emission and digital image correlation. The Scientific World Journal, 1-10.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ac8d2f4e-e7c4-467d-ba31-46ef06c65579