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Study on the performance of concrete-filled steel tube beam-column joints of new types

  • Liu, Dianzhong (School of Civil Engineering, Jilin Jianzhu University) ;
  • Li, Hongxian (School of Civil Engineering, Jilin Jianzhu University) ;
  • Ren, Huan (School of Civil Engineering, Jilin Jianzhu University)
  • Received : 2019.05.14
  • Accepted : 2020.12.03
  • Published : 2020.12.25

Abstract

In this paper, the influence of axial compression ratio on the mechanical properties of new type joints of side span of rectangular concrete-filled steel tubular column-H-type steel beam is studied. Two new types of side-span joints of rectangular concrete-filled steel tubular column-H-type steel beam are designed and quasi-static tests of five new type joints with 1:2 scale reduction ratios are performed. The axial compression ratio of joint JD1 is 0.3, 0.4 and 0.5, and the axial compression ratio of joint JD2 is 0.3 and 0.5. In the joint test, different axial forces were applied to the top of the column according to different axial compression ratios, and low-cyclic reciprocating load was applied on the beam. The stress and strain distribution, beam and column deformation, limit state, failure process, failure mechanism, stiffness degradation, ductile deformation and energy dissipation capacity of the joint were measured and analyzed. The results show that: with the increase of axial compression ratio, the ultimate bearing capacity of the joint decreases slightly, the plastic deformation decreases, and the stiffness and ductility decrease. According to the energy dissipation curve of the specimen, the equivalent damping coefficient also increases with the increase of axial compression ratio in a certain range, indicating that the increase of axial compression ratio can improve the seismic performance of the joint to a certain extent. The finite element method is used to simulate the joint test, and the test results are in good agreement with the simulation results.

Keywords

References

  1. Al-Azzawi, A.A. and Abed, S.A. (2017), "Investigation of the behavior of reinforced concrete hollow-core thick slabs", Comput. Concrete, 19(5), 567-577. https://doi.org/10.12989/cac.2017.19.5.567.
  2. Alostaz, Y.M. and Schneider, S.P. (1996), "Analytical behavior of connections to concrete-filled steel tubes", J. Constr. Steel Res., 40(2), 95-127. https://doi.org/10.1016/s0143-974x(96)00047-8.
  3. Cha, S.L., Lee, Y., An, G.H. and Kim, J.K. (2016), "Prediction of thermal stress in concrete structures with various restraints using thermal stress device", Comput. Concrete, 17(2), 173-188. https://doi.org/10.12989/cac.2016.17.2.173.
  4. Chen, H. (2004), "Experimental study on seismic performance of beam-column joints of square tubular concrete composite structures", Ph.D. Dissertation, Fuzhou University, Fuzhou.
  5. Dang, H.V., Lee, D. and Lee, K. (2017), "Single and multimaterial topology optimization of CFRP composites to retrofit beam-column connection", Comput. Concrete, 19(4), 405-411. https://doi.org/10.12989/cac.2017.19.4.405.
  6. Fanaie, N. and Moghadam, H.S. (2019), "Experimental study of rigid connection of drilled beam to CFT column with external stiffeners", J. Constr. Steel Res., 153, 209-221. https://doi.org/10.1016/j.jcsr.2018.10.016.
  7. General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China (2015), Metallic Materials-Tensile Testing at Ambient Temperature (GB/T 228.2-2015), Standards Press of China, Beijing.
  8. Hong, S.G., Lee, S.G., Hong, S. and Kang, T.H. (2016), "Deformation-based Strut-and-Tie Model for reinforced concrete columns subject to lateral loading", Comput. Concrete, 17(2), 157-172. https://doi.org/10.12989/cac.2016.17.2.157.
  9. Javed, M.F., Sulong, N.H.R., Memon, S.A., Rehman, S.K.U. and Khan, N.B. (2018). "Experimental and numerical study of flexural behavior of novel oil palm concrete filled steel tube exposed to elevated temperature", J. Clean. Prod., 205(12), 95-114. https://doi.org/10.1016/j.jclepro.2018.09.032
  10. Javed, M.F., Sulong, N.R., Memon, S.A., Rehman, S.K.U. and Khan, N.B. (2017), "FE modelling of the flexural behaviour of square and rectangular steel tubes filled with normal and high strength concrete", Thin Wall. Struct., 119(10), 470-481. https://doi.org/10.1016/j.tws.2017.06.025
  11. Jeddi, M.Z., Sulong, N.R. and Khanouki, M.A. (2017), "Seismic performance of a new through rib stiffener beam connection to concrete-filled steel tubular columns: An experimental study", Eng. Struct., 131, 477-491.https://doi.org/10.1016/j.engstruct.2016.10.038.
  12. Ministry of Housing and Urban-Rural Development of the People's Republic of China (2010), Code for Seismic Design of Buildings (GB/T 50011-2010), China Construction Industry Press, Beijing.
  13. Ministry of Housing and Urban-Rural Development of the People's Republic of China (2015), Building Seismic Test Regulations (JGJ/T101-2015), China Construction Industry Press, Beijing.
  14. Rahimipour, A., Hejazi, F., Vaghei, R. and Jaafar, M.S. (2016), "Finite element development of a Beam-column connection with CFRP sheets subjected to monotonic and cyclic loading", Comput. Concrete, 18(6), 1083-1096. https://doi.org/10.12989/cac.2016.18.6.1083.
  15. Ren, H. (2018), "Experimental study on the performance of concrete filled steel tube beam-column joints of new tepes", Ph.D. Dissertation, Jilin Jianzhu University, Changchun.
  16. Rong, B., Liu, R., Zhang, R., Chen, Z. and Apostolos, F. (2016), "Flexural bearing capacity of diaphragm-through joints of concrete-filled square steel tubular columns", Steel Compos. Struct., 20(3), 487-500. https://doi.org/10.12989/scs.2016.20.3.487.
  17. Tao, Z., Song, T.Y., Uy, B. and Han, L.H. (2016), "Bond behavior in concrete-filled steel tubes", J. Constr. Steel Res., 120, 81-93. https://doi.org/10.1016/j.jcsr.2015.12.030.
  18. Wan, F. (2010), "Experimental research on concret-filled squared tubular column to H-shape steel beam connection", Ph.D. Dissertation, Tianjin University, Tianjin.
  19. Won, D.H., Han, T.H., Kim, S., Park, W.S. and Kang, Y.J. (2016), "Transverse reinforcement for confinement at plastic hinge of circular composite hollow RC columns", Comput. Concrete, 17(3), 387-406. https://doi.org/10.12989/cac.2016.17.3.387.
  20. Yang, J., Sheehan, T., Dai, X. and Lam, D. (2017), "Combined effect of CFRP-TSR confinement on circular reinforced concrete columns", Comput. Concrete, 19(1), 41-49. https://doi.org/10.12989/cac.2017.19.1.041.
  21. Zong, Z., Lin, Y. and Zhou, J. (2004), "Experimental study on seismic performance of semi-rigid joints of rectangular concrete-filled steel tube columns and steel beams", J. Build. Struct., 25(6), 29-36. https://doi.org/10.3321/j.issn:1000-6869.2004.06.005.