DOI QR코드

DOI QR Code

Analysis of extended end plate connection equipped with SMA bolts using component method

  • Toghroli, Ali (Institute of Research and Development, Duy Tan University) ;
  • Nasirianfar, Mohammad Sadegh (Historic Building Rehabilitation (HBR), School of Architectural Engineering, University of Bologna) ;
  • Shariati, Ali (Division of Computational Mathematics and Engineering, Institute for Computational Science, Ton Duc Thang University) ;
  • Khorami, Majid (Universidad UTE, Facultad de Arquitectura y Urbanismo) ;
  • Paknahad, Masoud (Faculty of Engineering, Mahallat Institute of Higher Education) ;
  • Ahmadi, Masoud (Department of Civil Engineering, Ayatollah Boroujerdi University) ;
  • Gharehaghaj, Behnam (Department of Civil Engineering, Tabriz Branch, Islamic Azad University) ;
  • Zandi, Yousef (Department of Civil Engineering, Tabriz Branch, Islamic Azad University)
  • Received : 2020.02.19
  • Accepted : 2020.05.26
  • Published : 2020.07.25

Abstract

Shape Memory Alloys (SMAs) are new materials used in various fields of science and engineering, one of which is civil engineering. Owing to their distinguished capabilities such as super elasticity, energy dissipation, and tolerating cyclic deformations, these materials have been of interest to engineers. On the other hand, the connections of a steel structure are of paramount importance because of their vulnerabilities during an earthquake. Therefore, it is indispensable to find approaches to augment the efficiency and safety of the connection. This research investigates the behavior of steel connections with extended end plates equipped hybridly with 8 rows of high strength bolts as well as Nitinol superelastic SMA bolts. The connections are studied using component method in dual form. In this method, the components affecting the connections behavior, such as beam flange, beam web, column web, extended end plate, and bolts are considered as parallel and series springs according to the Euro-Code3. Then, the nonlinear force- displacement response of the connection is presented in the form of moment-rotation curve. The results obtained from this survey demonstrate that the connection has ductility, in addition to its high strength, due to high ductility of SMA bolts.

Keywords

References

  1. Abolmaali, A., Treadway, J., Aswath, P., Lu, F.K. and McCarthy, E. (2006), "Hysteresis behavior of t-stub connections with superelastic shape memory fasteners", J. Constr. Steel Res., 62(8), 831-838. https://doi.org/10.1016/j.jcsr.2005.11.017.
  2. Aksoylar, N.D., Elnashai, A.S. and Mahmoud, H. (2011), "The design and seismic performance of low-rise long-span frames with semi-rigid connections", J. Constr. Steel Res., 67(1), 114-126. https://doi.org/10.1016/j.jcsr.2010.07.001.
  3. Arabnejad Khanouki, M.M., Ramli Sulong, N.H. and Shariati, M. (2010), "Investigation of seismic behaviour of composite structures with concrete filled square steel tubular (CFSST) column by push-over and time-history analyses", Proceedings of the 4th International Conference on Steel & Composite Structures.
  4. Baei, M. (2014), Seismic Performance of Frames with Extended End-Plate Beam to Column Connection Considering Flexibility of the Connection. M.Sc, University of Tehran.
  5. Bahadori, A.R. and Ghassemieh, M. "Seismic evaluation of I shaped beam-column connection with direct connection", Proceedings of the 1st Conference on Civil & Architecture Engineering & Urban Sustainable Management, Gorgan, IRAN, 26 June
  6. Bahadori, A.R. and Ghassemieh, M. (2015), "Seismic evaluation of steel moment frames with end plate moment connection considering connection flexibility by component method", Proceedings of the 1st International Conference of Steel and Structure, Tehran, Iran.
  7. Buehler, W.J., Gilfrich, J. and Wiley, R. (1963), "Effect of low-temperature phase changes on the mechanical properties of alloys near composition TiNi", J. Appl. Phys., 34, 1475-1477. https://doi.org/10.1063/1.1729603.
  8. Christopoulos, C., Filiatrault, A., Uang, C.M. and Folz, B. (2002). "Posttensioned energy dissipating connections for moment-resisting steel frames", J. Struct. Eng., 128(9), 1111-1120. https://doi.org/10.1061/(ASCE)0733-9445(2002)128:9(1111).
  9. Da Silva, L.S. and Coelho, A.G. (2001), "A ductility model for steel connections", J. Constr. Steel Res., 57(1), 45-70. https://doi.org/10.1016/S0143-974X(00)00009-2.
  10. Davoodnabi, S.M., Mirhosseini, S.M. and Shariati, M. (2019), "Behavior of steel-concrete composite beam using angle shear connectors at fire condition", Steel Compos. Struct., 30(2), 141-147. https://doi.org/10.12989/scs.2019.30.2.141.
  11. DesRoches, R., Taftali, B. and Ellingwood, B.R. (2010), "Seismic performance assessment of steel frames with shape memory alloy connections. Part I-analysis and seismic demands", J. Earthq. Eng., 14, 471-486. https://doi.org/10.1080/13632460903301088.
  12. Ellingwood, B.R., Taftali, B. and DesRoches, R. (2010), "Seismic performance assessment of steel frames with shape memory alloy connections, Part II-Probabilistic seismic demand assessment", J. Earthq. Eng., 14, 631-645. https://doi.org/10.1080/13632460903247935.
  13. Fanaie, N. and Monfared, M.N. (2016), "Cyclic behavior of extended end-plate connections with shape memory alloy bolts", Struct. Eng. Mech., 60(3), 507-527. http://dx.doi.org/10.12989/sem.2016.60.3.507.
  14. Fang, C., Yam, M.C., Lam, A.C. and Xie, L. (2014), "Cyclic performance of extended end-plate connections equipped with shape memory alloy bolts", J. Constr. Steel Res., 94, 122-136. https://doi.org/10.1016/j.jcsr.2013.11.008.
  15. Ghassemieh, M. (1983), Inelastic finite element analysis of stiffened end-plate moment connections.
  16. Ghassemieh, M. and Bahadori, A.R. (2015), "Seismic evaluation of a steel moment frame with cover plate connection considering flexibility by component method", Proceedings of the 2015 World Congress on Advances in Structural Engineering and Mechanics, Incheon, Korea.
  17. Gorgun, H. (2013), "Geometrically nonlinear analysis of plane frames composed of flexibly connected members", Struct. Eng. Mech., 45(3), 277-309. https://doi.org/10.12989/sem.2013.45.3.277.
  18. Hosseinpour, E., Baharom, S., Badaruzzaman, W.H.W., Shariati, M. and Jalali, A. (2018), "Direct shear behavior of concrete filled hollow steel tube shear connector for slim-floor steel beams", Steel Compos. Struct., 26(4), 485-499. https://doi.org/10.12989/scs.2018.26.4.485.
  19. Hu, J.W., Choi, E. and Leon, R.T. (2011), "Design, analysis and application of innovative composite PR connections between steel beams and CFT columns", Smart Mater. Struct., 20, 025019. https://doi.org/10.1088/0964-1726/20/2/025019
  20. Jalali, A., Daie, M., Nazhadan, S.V.M., Kazemi-Arbat, P. and Shariati, M. (2012), "Seismic performance of structures with pre-bent strips as a damper", Int. J. Phys. Sci., 7, 4061-4072. https://doi.org/10.5897/IJPS11.1324.
  21. Khorami, M., Alvansazyazdi, M., Shariati, M., Zandi, Y., Jalali, A. and Tahir, M. (2017), "Seismic performance evaluation of buckling restrained braced frames (BRBF) using incremental nonlinear dynamic analysis method (IDA)", Earthq. Struct., 13(6), 1-8. http://dx.doi.org/10.12989/eas.2017.13.6.531.
  22. Khorami, M., Khorami, M., Motahar, H., Alvansazyazdi, M., Shariati, M., Jalali, A. and Tahir, M.M. (2017), "Evaluation of the seismic performance of special moment frames using incremental nonlinear dynamic analysis", Struct. Eng. Mech., 63(2), 259-268. https://doi.org/10.12989/sem.2017.63.2.259.
  23. Khorramian, K., Maleki, S., Shariati, M., Jalali, A. and Tahir, M. (2017), "Numerical analysis of tilted angle shear connectors in steel-concrete composite systems", Steel Compos. Struct., 23(1), 67-85. https://doi.org/10.12989/scs.2017.23.1.067.
  24. Khorramian, K., Maleki, S., Shariati, M. and Ramli Sulong, N.H. (2015), "Behavior of tilted angle shear connectors", PLoS One, 10, e0144288. https://doi.org/10.1371/journal.pone.0144288.
  25. Khorramian, K., Maleki, S., Shariati, M. and Ramli Sulong, N.H. (2016), "Behavior of Tilted Angle Shear Connectors (vol 10, e0144288, 2015)", PLOS ONE 11.
  26. Ma, H., Cho, C. and Wilkinson, T. (2008), "A numerical study on bolted end-plate connection using shape memory alloys", Mater. Struct., 41, 1419-1426. https://doi.org/10.1617/s11527-007-9339-5.
  27. Ma, H., Wilkinson, T. and Cho, C. (2007), "Feasibility study on a self-centering beam-to-column connection by using the superelastic behavior of SMAs", Smart Mater. Struct., 16(5), 1555. https://doi.org/10.1088/0964-1726/16/5/008
  28. Nasrollahi, S., Maleki, S., Shariati, M., Marto, A. and Khorami, M. (2018), "Investigation of pipe shear connectors using push out test", Steel Compos. Struct., 27(5), 537-543. http://dx.doi.org/10.12989/scs.2018.27.5.537.
  29. Ocel, J., DesRoches, R., Leon, R.T., Hess, W.G., Krumme, R., Hayes, J.R. and Sweeney, S. (2004), "Steel beam-column connections using shape memory alloys", J. Struct. Eng., 130(5), 732-740. https://doi.org/10.1061/(ASCE)0733-9445(2004)130:5(732).
  30. Olander, A. (1932), "An electrochemical investigation of solid cadmium-gold alloys", J. Am. Chem. Soc., 54, 3819-3833. https://doi.org/10.1021/ja01349a004.
  31. Paknahad, M., Shariati, M., Sedghi, Y., Bazzaz, M. and Khorami, M. (2018), "Shear capacity equation for channel shear connectors in steel-concrete composite beams", Steel Compos. Struct., 28(4), 483-494. https://doi.org/10.12989/scs.2018.28.4.483.
  32. Penar, B.W. (2005), Recentering beam-column connections using shape memory alloys, Georgia Institute of Technology.
  33. Ricles, J.M., Sause, R., Peng, S. and Lu, L. (2002), "Experimental evaluation of earthquake resistant posttensioned steel connections", J. Struct. Eng., 128(7), 850-859. https://doi.org/10.1061/(ASCE)0733-9445(2002)128:7(850).
  34. Shahabi, S., Ramli Sulong, N.H., Shariati, M., Mohammadhassani, M. and Shah, S. (2016), "Numerical analysis of channel connectors under fire and a comparison of performance with different types of shear connectors subjected to fire", Steel Compos. Struct., 20(3), 651-669. https://10.12989/scs.2016.20.3.651.
  35. Shahabi, S., Ramli Sulong, N.H., Shariati, M. and Shah, S. (2016), "Performance of shear connectors at elevated temperatures-A review", Steel Compos. Struct., 20(1), 185-203. https://doi.org/10.12989/scs.2016.20.1.185.
  36. Shariati, A., Ramli Sulong, N.H., Suhatril, M. and Shariati, M. (2012), "Investigation of channel shear connectors for composite concrete and steel T-beam", Int. J. Phys. Sci., 7, 1828-1831 DOI: 10.5897/IJPS11.1604.
  37. Shariati, A., Ramli Sulong, N.H., Suhatril, M. and Shariati, M. (2012), "Various types of shear connectors in composite structures: A review", Int. J. Phys. Sci., 7(22), 2876-2890. https://doi.org/10.5897/IJPSx11.004.
  38. Shariati, A., Shariati, M., Ramli Sulong, N.H., Suhatril, M., Arabnejad Khanouki, M.M. and Mahoutian, M. (2014), "Experimental assessment of angle shear connectors under monotonic and fully reversed cyclic loading in high strength concrete", Constr. Build. Mater., 52, 276-283. http://dx.doi.org/10.1016/j.conbuildmat.2013.11.036.
  39. Shariati, M. (2013), Behaviour of C-shaped Shear Connectors in Stell Concrete Composite Beams, Jabatan Kejuruteraan Awam, Fakulti Kejuruteraan, Universiti Malaya.
  40. Shariati, M., Ramli Sulong, N.H. and Arabnejad Khanouki, M.M. (2010), "Experimental and analytical study on channel shear connectors in light weight aggregate concrete", Proceedings of the 4th International Conference on Steel & Composite Structures, 21 - 23 July, 2010, Sydney, Australia, Research Publishing Services.
  41. Shariati, M., Ramli Sulong, N.H. and Arabnejad Khanouki, M.M. (2012), "Experimental assessment of channel shear connectors under monotonic and fully reversed cyclic loading in high strength concrete", Mater. Design, 34, 325-331 DOI: 10.1016/j.matdes.2011.08.008.
  42. Shariati, M., Ramli Sulong, N.H., Arabnejad Khanouki, M.M. and Mahoutian, M. (2011), "Shear resistance of channel shear connectors in plain, reinforced and lightweight concrete", Scientific Research and Essays, 6, 977-983.
  43. Shariati, M., Ramli Sulong, N.H., Arabnejad Khanouki, M.M. and Shariati, A. (2011), "Experimental and numerical investigations of channel shear connectors in high strength concrete", Proceedings of the 2011 world congress on advances in structural engineering and mechanics (ASEM'11+).
  44. Shariati, M., Ramli Sulong, N.H., Shariati, A. and Arabnejad Khanouki, M.M. (2015), "Behavior of V-shaped angle shear connectors: experimental and parametric study", Mater. Struct., 49, 3909-3926. DOI: 10.1617/s11527-015-0762-8.
  45. Shariati, M., Ramli Sulong, N.H., Shariati, A. and Kueh, A.B.H. (2016), "Comparative performance of channel and angle shear connectors in high strength concrete composites: An experimental study", Constr. Build. Mater., 120, 382-392. https://doi.org/10.1016/j.conbuildmat.2016.05.102.
  46. Shariati, M., Ramli Sulong, N.H., Sinaei, H., Khanouki, A., Mehdi, M. and Shafigh, P. (2011), Behavior of channel shear connectors in normal and light weight aggregate concrete (experimental and analytical study). Advanced Materials Research, Trans Tech Publ.
  47. Shariati, M., Ramli Sulong, N.H., Suhatril, M., Shariati, A., Arabnejad Khanouki, M.M. and Sinaei, H. (2012), "Behaviour of C-shaped angle shear connectors under monotonic and fully reversed cyclic loading: An experimental study", Mater. Design, 41, 67-73. https://doi.org/10.1016/j.matdes.2012.04.039.
  48. Shariati, M., Ramli Sulong, N.H., Suhatril, M., Shariati, A., Arabnejad Khanouki, M.M. and Sinaei, H. (2012), "Fatigue energy dissipation and failure analysis of channel shear connector embedded in the lightweight aggregate concrete in composite bridge girders", Proceedings of the 5th International Conference on Engineering Failure Analysis, 1-4 July 2012, Hilton Hotel, The Hague, The Netherlands.
  49. Shariati, M., Ramli Sulong, N.H., Suhatril, M., Shariati, A., Arabnejad Khanouki, M.M. and Sinaei, H. (2013), "Comparison of behaviour between channel and angle shear connectors under monotonic and fully reversed cyclic loading", Constr. Build. Mater., 38, 582-593. https://doi.org/10.1016/j.conbuildmat.2012.07.050.
  50. Shariati, M., Shariati, A., Ramli Sulong, N.H., Suhatril, M. and Arabnejad Khanouki, M.M. (2014), "Fatigue energy dissipation and failure analysis of angle shear connectors embedded in high strength concrete.", Eng. Fail. Anal., 41, 124-134: https://doi.org/10.1016/j.engfailanal.2014.02.017.
  51. Shariati, M., Tahmasbi, F., Mehrabi, P., Bahadori, A. and toghroli, A. (2020), "Monotonic behavior of C and L shaped angle shear connectors within steel-concrete composite beams: an experimental investigation", Steel Compos. Struct., 35(2), 237-247. http://dx.doi.org/10.12989/scs.2020.35.2.237.
  52. Shariati, M., Toghroli, A., Jalali, A. and Ibrahim, Z. (2017), "Assessment of stiffened angle shear connector under monotonic and fully reversed cyclic loading", Proceedings of the 5th International Conference on Advances in Civil, Structural and Mechanical Engineering-CSM 2017.
  53. Standard, B. (2006), "Eurocode 3-Design of steel structures-", BS EN 1993-1 1, 2005.
  54. Sumner, E.A. and Murray, T.M. (2002), "Behavior of extended end-plate moment connections subject to cyclic loading", J. Struct. Eng., 128, 501-508. https://doi.org/10.1061/(asce)0733-9445(2002)128:4(501)
  55. Tahmasbi, F., Maleki, S., Shariati, M., Ramli Sulong, N.H. and Tahir, M.M. (2016), "Shear Capacity of C-Shaped and L-Shaped Angle Shear Connectors", PLoS One 11, e0156989. https://doi.org/10.1371/journal.pone.0156989.
  56. Venture, S.J. (1997), SAC. Protocol for Fabrication, Inspection, Testing and Documentation of Beam-Column Connection Test and Other Experimental Specimens. SAC Rep, SAC/BD-97/02, Sacramento, California.
  57. Vernon, L. and Vernon, H. (1941), "Process of manufacturing articles of thermoplastic synthetic resins", US Patent 2234993.
  58. Wang, S. and Chen, Y. (2009), "Initial stiffness and moment resistance of reinforced joint with end-plate connection", Frontiers of Architecture and Civil Engineering in China, 3, 345. https://doi.org/10.1007/s11709-009-0054-x
  59. Wei, X., Shariati, M., Zandi, Y., Pei, S., Jin, Z., Gharachurlu, S., Abdullahi, M.M., Tahir, M.M. and Khorami, M. (2018), "Distribution of shear force in perforated shear connectors", Steel Compos. Struct., 27(3), 389-399. http://dx.doi.org/10.12989/scs.2018.27.3.389.