DOI QR코드

DOI QR Code

Performance of headed FRP bar reinforced concrete Beam-Column Joint

  • Md. Muslim Ansari (Structural Engineering, CSIR- Central Building Research Institute) ;
  • Ajay Chourasia (Structural Engineering, CSIR- Central Building Research Institute)
  • Received : 2023.01.23
  • Accepted : 2024.04.01
  • Published : 2024.04.10

Abstract

Fiber Reinforced Polymer (FRP) bars have now been widely adopted as an alternative to traditional steel reinforcements in infrastructure and civil industries worldwide due variety of merits. This paper presents a numerical methodology to investigate FRP bar-reinforced beam-column joint behavior under quasi-static loading. The proposed numerical model is validated with test results considering load-deflection behavior, damage pattern at beam-column joint, and strain variation in reinforcements, wherein the results are in agreement. The numerical model is subsequently employed for parametric investigation to enhance the end-span beam-column joint performance using different joint reinforcement systems. To reduce the manufacturing issue of bend in the FRP bar, the headed FRP bar is employed in a beam-column joint, and performance was investigated at different column axial loads. Headed bar-reinforced beam-column joints show better performance as compared to beam-column joints having an L-bar in terms of concrete damage, load-carrying capacity, and joint shear strength. The applicability and efficiency of FRP bars at different story heights have also been investigated with varying column axial loads.

Keywords

Acknowledgement

The authors gratefully acknowledge the support of the Director, CSIR- Central Building Research Institute Roorkee, India, for his support.

References

  1. Abaqus 2022 User's Manual (2022), Dassault Systems Simulia, SIMULIA, USA.
  2. Ali, M.A. and El-Salakawy, E. (2016), "Seismic performance of GFRP reinforced concrete rectangular columns", J. Compos. Constr., 20(3), 04015074. https://doi.org/10.1061/(ASCE)CC.1943-5614.0000637.
  3. Alzabeebee, S., Dhahir, M.K. and Keawsawasvong, S. (2022), "Predictive model for the shear strength of concrete beams reinforced with longitudinal FRP bars", Struct. Eng. Mech., 84(2), 143-154. https://doi.org/10.12989/sem.2022.84.2.143.
  4. Arockiasamy, M., Chidambaram, S., Amer, A. and Shahawy, M. (2000), "Time-dependent deformations of concrete beams reinforced with CFRP bars", Compos. Part B Eng., 31, 577-592. https://doi.org/10.1016/S1359-8368(99)00045-1.
  5. Biruk, H.T., Yifei, C. and Amar, K. (2020), "Bond properties of steel and sand-coated GFRP bars in Alkali activated cement concrete", Struct. Eng. Mech., 75(1), 123-131. https://doi.org/10.12989/sem.2020.75.1.123.
  6. Clyde, C. and Lawrence, D.R. (2000), "Performance-based evaluation of exterior reinforced concrete building joints for seismic excitation", PEER Report 2000/05, Pacific Earthquake Engineering Research Center, College of Engineering, University of California, Berkeley.
  7. De Luca, A., Matta, F. and Nanni, A. (2010), "Behavior of full-scale glass fiber-reinforced polymer reinforced concrete columns under axial load", ACI Struct. J., 107(5), 589-596. https://doi.org/10.14359/51663912.
  8. Ehsani, M.R. and Wight, J.K. (1985), "Exterior reinforced concrete beam-to-column connections subjected to earthquake-type loading", J. Proc., 82(4), 492-499.
  9. El-Mandouh, M.A., Omar, M.S., Elnaggar, M.A. and Abd El-Maula, A.S. (2022), "Cyclic behavior of high-strength lightweight concrete exterior beam-column connections reinforced with GFRP", Build., 12, 179. https://doi.org/10.3390/buildings12020179.
  10. El-Naqeeb, M.H., Basem, S.A. and El-Metwally, S.E. (2022), "Strength of exterior beam-column connections considering column axial stress: Numerical investigation", Jordan J. Civil Eng., 16(2), 266-283.
  11. Elshamandy, M.G., Farghaly, A.S. and Benmokrane, B. (2018), "Experimental behavior of glass fiber-reinforced polymer-reinforced concrete columns under lateral cyclic load", ACI Struct. J., 115(2), 337-349. https://doi.org/10.14359/51700985.
  12. Elsouri, A.M. and Harajli, M.H. (2013), "Seismic response of exterior RC wide beam-narrow column joints: Earthquake resistant versus as-built joints", Eng. Struct., 57, 394-405. https://doi.org/10.1016/j.engstruct.2013.09.032.
  13. Ghomi, S.J. and El-Salakawy, E. (2017), "Seismic performance of interior GFRP-RC beam-column joints", Proceedings of the 13th International Symposium on Fiber-Reinforced Polymer Reinforcement for Concrete Structures, Anaheim, CA, USA.
  14. Ghomi, S.K. and El-Salakawy, E. (2016), "Seismic performance of GFRP-RC exterior beam-column joints with lateral beams", J. Compos. Constr., 20(1), 04015019. https://doi.org/10.1061/(ASCE)CC.1943-5614.0000582.
  15. Gilbert, R. and Warner, R. (1978), "Tension stiffening in reinforced concrete slabs", J. Struct. Div., 104(12), 1885-1900.
  16. Ha, G.J., Cho, C.G., Kang, H.W. and Feo, L. (2013), "Seismic improvement of RC beam-column joints using hexagonal CFRP bars combined with CFRP sheets", Compos. Struct., 95, 464-470. https://doi.org/10.1016/j.compstruct.2012.08.022.
  17. Haach, V.G., El Debs, A. and El Debs, M. (2008), "Evaluation of the influence of the column axial load on the behavior of monotonically loaded RC exterior beam- column joints through numerical simulations", Eng. Struct., 30(4), 965-975. https://doi.org/10.1016/j.engstruct.2007.06.005.
  18. Haach, V.G., El Debs, A.L. and El Debs, M.K. (2014), "Influence of high column axial loads in exterior R/C beam-column joints", KSCE J. Civil Eng., 18(2), 558-565. https://doi.org/10.1007/s12205-014-1201-z.
  19. Hadi, M.N.S. and Youssef, J. (2016), "Experimental investigation of GFRP-reinforced and GFRP-encased square concrete specimens under axial and eccentric load, and four-point bending test", J. Compos. Constr., 20(5), 04016020. https://doi.org/10.1061/(ASCE)CC.1943-5614.0000675.
  20. Hanson, N.W. and Connor, H.W. (1967), "Seismic resistance of reinforced concrete beam-column joints", J. Struct. Div., 93(ST5), 533-559. https://doi.org/10.1061/JSDEAG.0001785.
  21. Hasaballa, M. and El-Salakawy, E. (2016), "Shear capacity of exterior beam-column joints reinforced with GFRP bars and stirrups", J. Compos. Constr., 20, 04015047. https://doi.org/10.1061/(ASCE)CC.1943-5614.0000609.
  22. Hasaballa, M., Amr, E. and El-Salakawy, E. (2011), "Seismic behavior of beam-column joints reinforced with GFRP bars and stirrups", J. Compos. Constr., 15, 875-886. https://doi.org/10.1061/(ASCE)CC.1943-5614.0000220.
  23. Hassan, W.M. (2011), "Analytical and experimental assessment of seismic vulnerability of beam-column joints without transverse reinforcement in concrete buildings", PhD Thesis, University of California, Berkeley, USA.
  24. Hsu, L.S. and Hsu, C.T.T. (1994), "Complete stress-strain behaviour of high-strength concrete under compression", Mag. Concrete Res., 46(169), 301-312. https://doi.org/10.1680/macr.1994.46.169.301.
  25. Kim, J. and La Fave, J.M. (2007), "Key influence parameters for the joint shear behavior of reinforced concrete (RC) beam-column connections", Eng. Struct., 29(10), 2523-2539. https://doi.org/10.1016/j.engstruct.2006.12.012.
  26. Kim, M.S., Lee, Y.K., Kim, H., Scanlon, A. and Lee, J. (2011), "Flexural behavior of concrete beams reinforced with aramid fiber reinforced polymer (AFRP) bars", Struct. Eng. Mech., 38(4), 459-477. https://doi.org/10.12989/sem.2011.38.4.459.
  27. Kytinou, V.K., Kosmidou, P.M.K. and Constantin, E.C. (2022), "Numerical analysis exterior RC beam-column joints with CFRP bars as Beam's tensional reinforcement under cyclic reversal deformations", Appl. Sci., 12(15), 7419. https://doi.org/10.3390/app12157419.
  28. Laith, A.N. and Farid, A. (2020), "Evaluation of FRP bars under compression and their performance in RC columns", Mater., 13(20), 4541. https://doi.org/10.3390/ma13204541.
  29. Lee, J. (1996), "Theory and implementation of plastic-damage model for concrete structures under cyclic and dynamic loading", Ph.D. Thesis, University of California, Berkeley, USA.
  30. Li, B. and Leong, C.L. (2015), "Experimental and numerical investigations of the seismic behavior of high-strength concrete beam-column joints with column axial load", J. Struct. Eng., 141(9), 04014220. https://doi.org/10.1061/(ASCE)ST.1943-541X.0001191.
  31. Lubliner, J., Oliver, J., Oller, S. and Onate, E. (1989), "A plastic-damage model for concrete", Int. J. Solid. Struct., 25, 299-329.
  32. Mady, M., El-Ragaby, A. and El-Salakawy, E. (2011), "Experimental investigation on the seismic performance of beam-column joints reinforced with GFRP bars", J. Earthq. Eng., 15, 7798. https://doi.org/10.1080/13632461003668038.
  33. Mady, M., El-Ragaby, A. and El-Salakawy, E. (2011), "Seismic behavior of beam-column joints reinforced with GFRP bars and stirrups", J. Compos. Constr., 6, 875-886. https://doi.org/10.1061/(ASCE)CC.1943-5614.0000220.
  34. Masi, A., Santarsiero, G., Lignola, G.P. and Verderame, G.M. (2013), "Study of the seismic behavior of external RC beam-column joints through experimental tests and numerical simulations", Eng. Struct., 52(1), 207-219. https://doi.org/10.1016/j.engstruct.2013.02.023.
  35. Najafgholipour, M.A., Dehghan, S.M., Dooshabi, A. and Niroomandi, A. (2017), "Finite element analysis of reinforced concrete beam-column connections with governing joint shear failure mode", Lat. Am. J. Solid. Struct., 14, 1200-1225. http://doi.org/10.1590/1679-78253682.
  36. Nayal, R. and Rasheed, H.A. (2006), "Tension stiffening model for concrete beams reinforced with steel and FRP bars", J. Mater. Civil Eng., 18(6), 831-841. https://doi.org/10.1061/(ASCE)0899-1561(2006)18:6(831).
  37. Nehdi, M., Shahria, M.A. and Youssef, M.A. (2010), "Development of corrosion-free concrete beam-column joint with adequate seismic energy dissipation", Eng. Struct., 32, 2518-2528. https://doi.org/10.1016/j.engstruct.2010.04.020.
  38. Ngoc, C.T.T. and Son, N.V. (2021), "Shear deformations based on variable angle truss model for concrete beams reinforced with FRP bars", Struct. Eng. Mech., 79(3), 337-345. https://doi.org/10.12989/sem.2021.79.3.337.
  39. Ramezanpour, M., Morshed, R. and Eslami, A. (2018), "Experimental investigation on optimal shear strengthening of RC beams using NSM GFRP bars", Struct. Eng. Mech., 67(1), 45-52. https://doi.org/10.12989/sem.2018.67.1.045.
  40. Safdar, M., Sheikh, M.N. and Hadi, M.N.S. (2022), "Cyclic performance of GFRP-RC T-Connections with different anchorage and connection details", J. Compos. Constr., 26(3), 04022022. https://doi.org/10.1061/(ASCE)CC.1943-5614.0001211.
  41. Said, A.M. and Nehdi, M.L. (2004), "Use of FRP for RC frames in seismic zones. Part II. Performance of steel-free GFRP-reinforced beam-column joints", Appl. Compos. Mater., 11(4), 227-245, https://doi.org/10.1023/B:ACMA.0000035480.85721.b5.
  42. Said, M.A. and Hazem, M.F.E. (2018), "Exterior reinforced concrete beam column joint subjected to monotonic loading", Alex. Eng. J., 57(4), 4133-4144. https://doi.org/10.1016/j.aej.2018.10.015.
  43. Saleh, Z., Neaz Sheikh, M., Remennikov, A.M. and Basu, A. (2020), "Response of concrete beams reinforced with GFRP bars under static loads", ACMSM25: Proceedings of the 25th Australasian Conference on Mechanics of Structures and Materials, Springer Singapore.
  44. Seongeun, K. and Seunghun, K. (2019), "Flexural behavior of concrete beams with steel bar and FRP reinforcement", J. Asian. Arch. Build. Eng., 18(2), 89-97, https://doi.org/10.1080/13467581.2019.1596814.
  45. Sharma, A., Eligehausen, R. and Reddy, G.R. (2011), "A new model to simulate joint shear behavior of poorly detailed beam-column connections in RC structures under seismic loads, Part I: Exterior joints", Eng Struct., 33(3), 1034-1051. https://doi.org/10.1016/j.engstruct.2010.12.026.
  46. Shubham, S., Ajay, C. and Yogesh, K. (2021), "Cyclic behaviour of precast reinforced concrete beam-columns connected with headed bars", J. Build. Eng., 42, 103078. https://doi.org/10.1016/j.jobe.2021.103078.
  47. Stephen, J.H. (2000), "Reinforced concrete beam-column connection behaviour", PhD Thesis, School of Engineering, University of Durham South Road, Durham, UK.
  48. Wei, R., Sneed, L.H., Yang, Y. and Ruili, H. (2015), "Numerical simulation of pre-stressed precast concrete bridge deck panels using damage plasticity model", Int. J. Concrete Struct. Mater., 9(1), 45-54. https://doi.org/10.1007/s40069-014-0091-2.
  49. Wu, J.Y., Li, J. and Faria, R. (2006), "An energy release rate-based plastic-damage model for concrete", Int. J. Solid. Struct., 43(3), 583-612. https://doi.org/10.1016/j.ijsolstr.2005.05.038.