References
- Abbas, H., Al-Salloum, Y., Alsayed, S., Alhaddad, M. and Iqbal, R. (2017), "Post-heating response of concrete-filled circular steel columns", KSCE J. Civil Eng., 21(4), 1367-1378. https://doi.org/10.1007/s12205-016-0852-3
- Abdollahzaded, G.H. and Afaghi, D.A. (2017), "Effect of drywall and brick wall on fire behavior of concrete-filled steel tube column", Struct. Concrete, 19(3),851-863. https://doi.org/10.1002/suco.201700054
- Abdollahzadeh, G.H. and shalikar, R. (2017), "Retrofitting of steel moment-resisting frames under fire loading against progressive collapse", Int. J. Steel Struct., 17(4), 1597-1611. https://doi.org/10.1007/s13296-017-1225-6
- Abramowicz, M. and Kowalski, R. (2005), "The influence of short time water cooling on the mechanical properties of concrete heated up to high temperature", J. Civil Eng. Manage., 11(2), 85-90. https://doi.org/10.3846/13923730.2005.9636336
- Anderberg, Y. and Thelandersson, S. (1976), "Stress and deformation characteristics of concrete at high temperatures. 2. experimental investigation and material behaviour model", Bulletin of Division of Structural Mechanics and Concrete Construction, Bulletin 54.
- BS-476-20 (1987), Fire Tests on Building Materials and Structures Method for Determination of the Fire Resistance of Elements of Construction (General Principles).
- Chen, J., Young, B. and Uy, B. (2006), "Behavior of high strength structural steel at elevated temperatures", J. Struct. Eng., 132(12), 1948-1954. https://doi.org/10.1061/(ASCE)0733-9445(2006)132:12(1948)
- Dimia, M.S., Guenfoud, M., Gernay, T. and Franssen, J.M. (2011), "Collapse of concrete columns during and after the cooling phase of a fire", J. Fire Protec. Eng., 21(4), 245-263. https://doi.org/10.1177/1042391511423451
- Dimia, M.S., Guenfoud, M., Gernay, T. and Franssen, J.M. (2011), "Collapse of concrete columns during and after the cooling phase of a fire", J. Fire Protec. Eng., 21(4), 245-263. https://doi.org/10.1177/1042391511423451
- Dimia, M.S., Sekkiou, S., Baghdadi, M. and Guenfoud, M. (2017), "Structural behaviour of concrete filled hollow steel sections exposed to parametric fire", Challenge, 3(4), 160-165.
- Ding, J. and Wang, Y.C. (2008), "Realistic modelling of thermal and structural behaviour of unprotected concrete filled tubular columns in fire", J. Constr. Steel Res., 64(10), 1086-1102. https://doi.org/10.1016/j.jcsr.2007.09.014
- Eurocode 1 (2002), Actions on Structures-Part 1-2: General Actions-Actions on Structures Exposed to Fire, British Standards Institution.
- Gernay, T. and Dimia, M.S. (2011), "Structural behavior of concrete columns under natural fires including cooling down phase", Proceedings of The International Conference on Recent Advances in Nonlinear Models-Structural Concrete Applications, 637-656.
- Gernay, T. and Dimia, M.S. (2013), "Structural behaviour of concrete columns under natural fires", Eng. Comput., 30(6), 854-872. https://doi.org/10.1108/EC-05-2012-0103
- Ghojel, J. (2004), "Experimental and analytical technique for estimating interface thermal conductance in composite structural elements under simulated fire conditions", Exp. Therm. Fluid Sci., 28(4), 347-354. https://doi.org/10.1016/S0894-1777(03)00113-4
- Gourley, B.C., Tort, C., Dennavit, M.D., Schiller, P.H. and Hajjar, J.F. (2001), "A synopsis of studies of the monotonic and cyclic behavior of concrete-filled steel tube beam-columns", ST-01-4, Institute of Technology University of Minnesota.
- Guergah, C., Dimia, M.S. and Guenfoud, M. (2018), "Contribution to the numerical modelling of the spalling phenomenon: Case of a reinforced concrete beams", Arab. J. Sci. Eng., 43(4), 1747-1759. https://doi.org/10.1007/s13369-017-2704-y
- Han, L.H. (2001), "Fire performance of concrete filled steel tubular beam-columns", J. Constr. Steel Res., 57(6), 697-711. https://doi.org/10.1016/S0143-974X(00)00030-4
- Han, L.H., Yang, H. and Cheng, S.L. (2002), "Residual strength of concrete filled RHS stub columns after high temperatures", Adv. Struct. Eng., 5(2), 123-134. https://doi.org/10.1260/1369433021502614
- Han, L.H., Yang, Y.F. and Xu, L. (2003), "An experimental study and calculation on the fire resistance of concrete-filled SHS and RHS columns", J. Constr. Steel Res., 59(4), 427-452. https://doi.org/10.1016/S0143-974X(02)00041-X
- Ibrahimbegovic, A., Boulkertous, A., Davenne, L., Muhasilovic, M. and Pokrklic, A. (2010), "On modeling of fire resistance tests on concrete and reinforced-concrete structures", Comput. Concrete, 7(4), 285-301. https://doi.org/10.12989/cac.2010.7.4.285
- Li, Y.H. and Franssen, J.M. (2011), "Test results and model for the residual compressive strength of concrete after a fire", J. Struct. Fire Eng., 2(1), 29-44. https://doi.org/10.1260/2040-2317.2.1.29
- Liang, J.F., Wang, E., Zhou, X. and Le, Q.L. (2018), "Influence of high temperature on mechanical properties of concrete containing recycled fine aggregate", Comput. Concrete, 21(1), 87-94. https://doi.org/10.12989/CAC.2018.21.1.087
- Liang, J.F., Yang, Z.P., Yi, P.H. and Wang, J.B. (2017), "Stressstrain relationship for recycled aggregate concrete after exposure to elevated temperatures", Comput. Concrete, 19(6), 609-615. https://doi.org/10.12989/CAC.2017.19.6.609
- Lie, T.T. (1994), "Fire resistance of circular steel columns filled with bar-reinforced concrete", J. Struct. Eng., 120(5), 1489-1509. https://doi.org/10.1061/(ASCE)0733-9445(1994)120:5(1489)
- Lie, T.T. and Chabot, M. (1992), "Experimental studies on the fire resistance of hollow steel columns filled with plain concrete", NRC-IRC-4196, National Research Council Canada.
- Lie, T.T. and Irwin, RJ. (1995), "Fire resistance of rectangular steel columns filled with bar-reinforced concrete", J. Struct. Eng., 121(5), 797-805. https://doi.org/10.1061/(ASCE)0733-9445(1995)121:5(797)
- Lu, J., Liu, H., Chen, Z. and Liao, X. (2016), "Experimental investigation into the post-fire mechanical properties of hotrolled and cold-formed steels", J. Constr. Steel Res., 121, 291-310. https://doi.org/10.1016/j.jcsr.2016.03.005
- Outinen, J. and Makelainen, P. (2004), "Mechanical properties of structural steel at elevated temperatures and after cooling down", Fire Mater., 28(2-4), 237-51. https://doi.org/10.1002/fam.849
- Ozbolt, J., Periskic, G., Reinhardt, H.W. and Eligehausen, R. (2008), "Numerical analysis of spalling of concrete cover at high temperature", Comput. Concrete, 5(4), 279-293. https://doi.org/10.12989/cac.2008.5.4.279
- Peng, G., Nakamura, S., Zhu, X., Wu, Q. and Wang, H. (2017), "An experimental and numerical study on temperature gradient and thermal stress of CFST truss girders under solar radiation", Comput. Concrete, 20(5), 605-616. https://doi.org/10.12989/CAC.2017.20.5.605
- Sakumoto, Y., Okada, T., Yoshida, M. and Tasaka, S. (1994), "Fire resistance of concrete-filled, fire-resistant steel-tube columns", J. Mater. Civil Eng., 6(2), 169-184. https://doi.org/10.1061/(ASCE)0899-1561(1994)6:2(169)
- Song, T.Y., Han, L.H. and Yu, H.X. (2010), "Concrete filled steel tube stub columns under combined temperature and loading", J. Constr. Steel Res., 66(3), 369-384. https://doi.org/10.1016/j.jcsr.2009.10.010
- Tan, Q., Gardner, L. and Han, L.H. (2018), "Performance of steelreinforced concrete-filled stainless steel tubular columns at elevated temperature", Int. J. Struct. Stab. Dyn., 19(1), 1940002. https://doi.org/10.1142/s0219455419400029
- Yang, H., Han L.H. and Wang, Y.C. (2008), "Effects of heating and loading histories on post fire cooling behaviour of concrete filled steel tubular columns", J. Constr. Steel Res., 64(5), 556-570. https://doi.org/10.1016/j.jcsr.2007.09.007
- Yang, H., Liu, F. and Gardner, L. (2013), "Performance of concrete-filled RHS columns exposed to fire on 3 sides", Eng. Struct., 56, 1986-2004. https://doi.org/10.1016/j.engstruct.2013.08.019
- Yao, Y. and Hu, X.X. (2015), "Cooling behavior and residual strength of post-fire concrete filled steel tubular columns", J. Constr. Steel Res., 112, 282-292. https://doi.org/10.1016/j.jcsr.2015.05.020
- Yu, M., Zha, X., Ye, J. and Li, Y. (2010), "Fire response and resitance of concrete-filled steel tubular frame structures", Int. J. Struct. Stab. Dyn., 10(2), 253-271.
- Zhang, J.B., Xu, Z.D., Han, J.S. and Wang, X.D. (2011), "Prediction of the thermal contact resistance at the steelconcrete interface of CFST columns with circular crosssection", Mech. Adv. Mater. Struct., 19, 530-542. https://doi.org/10.1080/15376494.2011.563405
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