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Study on the behavior of beam-column connection in precast concrete structure

  • Kataoka, Marcela N. (University of Sao Paulo, Engineering School of Sao Carlos, Structural Department, Av. Trabalhador Saocarlense) ;
  • Ferreira, Marcelo A. (Federal University of Sao Carlos, Department of Civil Engineering) ;
  • El Debs, Ana Lucia H.C. (University of Sao Paulo, Engineering School of Sao Carlos, Structural Department, Av. Trabalhador Saocarlense)
  • Received : 2014.07.29
  • Accepted : 2015.07.12
  • Published : 2015.07.25

Abstract

Due to the increase of the use of precast concrete structures in multistory buildings, this paper deals with the behavior of an specific type of beam-column connection used in this structural system. The connection is composed by concrete corbels, dowels and continuity bars passing through the column. The study was developed based on the experimental and numerical results. In the experimental analysis a full scale specimen was tested and for numerical study, a 3D computational model was created using a finite element analyze (FEA) software, called DIANA. The comparison of the results showed a satisfactory correlation between loading versus displacement curves.

Keywords

References

  1. British Standard 8110-1 (1996), "Structural use of concrete. Part 1: Code of practice for design and construction".
  2. Chefdebien, A. (1998), "Precast concrete beam to column head connections", Control of the Semi-Rigid Behaviour of Civil Engineering Structural Connections, COST-C1 International Conference, Liege, Belgium.
  3. Choi, H.K., Choi, Y.C. and Choi, C.S. (2013), "Development and testing of precast concrete beam-to-column connections", Eng. Struct., 56, 1820-1835. https://doi.org/10.1016/j.engstruct.2013.07.021
  4. COST-C1 (1996), European Cooperation in the Field of Scientific and Technical Research, "Semi-rigid behavior of civil engineering structural connections-Composite steel-concrete joints in braced frames for buildings", Bruxelas, Luxemburgo.
  5. Elliott, K.S. (2002), "Precast Concrete Structures", Butterworkth-Heinemann, MA.
  6. Elliott, K.S., Davies, G., Ferreira, M.A., Gorgun, H. and Madhi, A.A. (2003), "Can precast concrete structures be designed as semi-rigid frames? part 1-the experimental evidence", Electron. J. Struct. Eng., 81(16).
  7. Elliott, K.S., Davies, G., Ferreira, M.A., Gorgun, H. and Madhi, A.A. (2003), "Can precast concrete structures be designed as semi-rigid frames? part 2-analytical equations and column effective length factors", Electron. J. Struct. Eng., 81(16).
  8. FIB guide to good practice (2003), "Structural Connections for Precast Concrete Buildings", FIB:Commission C6: Prefabrication.
  9. Ferreira, M.A., Kataoka, M.N., Carvalho, R.C., Araujo, D.L. and Catoia, B. (2007), "Validation of analytical methods for the analysis of the flexural behaviour of precast beams with semi-rigid connections". Proceedings of the fib Symposium, Concrete Structures: Stimulators of Development, Dubrovnik, Croatia.
  10. Gorgun, H. (1997), "Semi-rigid behaviour of connections in precast concrete structures", Ph.D. Thesis, University of Nottingham, United Kingdom.
  11. Hawileh, R.A., Rahman, A. and Tabatabai, H. (2010), "Nonlinear finite element analysis and modeling of a precast hybrid beam-column connection subjected to cyclic loads", Appl. Math. Model., 34(9), 2562-2583. https://doi.org/10.1016/j.apm.2009.11.020
  12. Kaya, M. and Arslan, S. (2009), "Analytical modeling of post-tensioned precast beam-to-column connections", Mater. Design., 30(9), 3802-3811. https://doi.org/10.1016/j.matdes.2009.01.033
  13. Kataoka, M.N., Ferreira, M.A. and El Debs, A.L.H.C. (2012), "A study on the behavior of beam-column connections in precast concrete structures: experimental analysis", Ibracon. Struct. Mater. J., 5(6), 848-873
  14. Precast Concrete Institute, PCI (1986), "Research Project $n^{\circ}1/4$- Moment resistant connections and simple connections", Chicago, Illinois.
  15. Precast Concrete Institute, PCI (2001), "Precast and Prestressed Concrete", 5th edition, Chicago, Illinois.
  16. Shariatmada, R.H. and Beydokhti, E.Z. (2011), "Experimental investigation of precast concrete beam to column connections subjected to reversed cyclic loads", Proceedings of the 6th International Conference on Seismology and Earthquake Engineering, Tehran, Iran.
  17. Saqan, E.I. (1995), "Evaluation of ductile beam-column connections for use in seismic-resistant precast frames", Ph.D. Thesis, Faculty of the Graduate School of The University of Texas, Austin.
  18. TNO Building and Construction Research (2005), "Diana User's Manual", Release 9, Delft, Netherlands.
  19. Zoubek, B., Isakovic, T., Fahjan, Y. and Fischinger, M. (2013), "Cyclic failure analysis of the beam-to-column dowel connections in precast industrial buildings", Eng. Struct., 52, 179-191. https://doi.org/10.1016/j.engstruct.2013.02.028

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