References
- ACI (1999), Building code requirements for reinforced concrete (ACI 318-99), American Concrete Institute, Detroit.
- AISC (2010), Specification for structural steel buildings, American Institute of Steel Construction, Chicago, IL.
- Chung, K.S., Lee, S.J., Ryu, J.H. and Kim, J.H. (2010), "Prediction of the structural behavior of high strength concrete-filled square steel tube column subjected to flexural and eccentric loading", Architectural Res., 26(15), 115-123.
- Elchalakani, M., Zhao, X. and Grzebieta, R. (2002), "Plastic mechanism analysis of circular tubes under pure bending", Int. J. of Mechanical Sci., 44(6), 1117-1143. https://doi.org/10.1016/S0020-7403(02)00017-6
- Eurocode4 (2004), Design of composite steel and concrete structures part 2, General rules and rules for bridges, Brussels.
- Gardner, N.J. and Jacobson, E.R. (1967), "Structural behavior of concrete filled steel tubes", ACI Journal, 64(7), 404-412.
- Han, L.H. (2000), Concrete filled steel tubular structures, China Science Press, Beijing.
- Han, L.H., Yao, G.H. and Zhao, X.L. (2005), "Tests and calculations for hollow structural steel (HSS) stub columns filled with self-consolidating concrete (SCC)", J. of Constr. Steel Res., 61(9), 1241-1269. https://doi.org/10.1016/j.jcsr.2005.01.004
- Huang, C.S., Yeh, Y.K., Liu, G.Y., Hu, H.T., Tsai, K., Weng, Y., Wang, S. and Wu, M.H. (2002), "Axial load behavior of stiffened concrete-filled steel columns", J. of Struct. Eng., 128(9), 1222-1230. https://doi.org/10.1061/(ASCE)0733-9445(2002)128:9(1222)
- Hwang, W.S., Kim, D.J. and Jung, D.A. (2003), "Ultimate strength of CFT short columns considering the confining effect of concrete", KSCE Journal, 23(5), 807-1064.
- Kim, T.H., Lee, K.M., Yoon, C. and Shin, H.M. (2003), "Inelastic behavior and ductility capacity of reinforced concrete bridge piers under earthquake. II: Numerical validation", J. of Struct. Eng., 129(9), 1208-1219. https://doi.org/10.1061/(ASCE)0733-9445(2003)129:9(1208)
- O'Shea, M.D. and Bridge, R.Q. (2000), "Design of circular thin-walled concrete filled steel tubes", J. of Struct. Eng., 126(11), 1295-1303. https://doi.org/10.1061/(ASCE)0733-9445(2000)126:11(1295)
- Prakash, A., Anandavalli, N., Madheswaran, C.K. and Lakshmanan, N. (2012), "Experimental investigation on flexural behaviour of HSS stud connected steel-concrete composite girders", Steel. Compos. Struct., 13(3), 239-258. https://doi.org/10.12989/scs.2012.13.3.239
- Sakino, K., Nakahara, H., Morino, S. and Nishiyama, I. (2004), "Behavior of centrally loaded concrete-filled steel-tube short columns", J. of Struct. Eng., 130(2), 180-188. https://doi.org/10.1061/(ASCE)0733-9445(2004)130:2(180)
- Schneider, S.P. (1998), "Axially loaded concrete-filled steel tubes", J. of Struct. Eng., 124(10), 1125-1138. https://doi.org/10.1061/(ASCE)0733-9445(1998)124:10(1125)
- Tao, Z. and Han, L.H. (2006), "Behaviour of concrete-filled double skin rectangular steel tubular beam-columns", J. of Constr. Steel Res., 62(7), 631-646. https://doi.org/10.1016/j.jcsr.2005.11.008
- Tao, Z., Han, L.H. and Zhao, X.L. (2004), "Behaviour of concrete-filled double skin (CHS inner and CHS outer) steel tubular stub columns and beam-columns", J. of Constr. Steel Res., 60(8), 1129-1158. https://doi.org/10.1016/j.jcsr.2003.11.008
- Tomii, M., Yoshimura, K. and Morishita, Y. (1977), "Experimental studies on concrete filled steel tubular stub columns under concentric loading", International Colloquium on Stability of Structures under Static and Dynamic Loads, Washington, D.C.
- Uenaka, K., Kitoh, H. and Sonoda, K. (2010), "Concrete filled double skin circular stub columns under compression", Thin-Walled Struct., 48(1), 19-24. https://doi.org/10.1016/j.tws.2009.08.001
- Wei, S., Mau, S., Vipulanandan, C. and Mantrala, S. (1995), "Performance of new sandwich tube under axial loading: experiment", J. of Struct. Eng., 121(12), 1806-1814. https://doi.org/10.1061/(ASCE)0733-9445(1995)121:12(1806)
- Yamamoto, T., Kawaguchi, J. and Morino, S. (2002), "Experimental study of the size effect on the behavior of concrete filled circular steel tube columns under axial compression", J. Struct. Constr. Eng., (561), 237-244.
- Yu, Z., Ding, F. and Cai, C. (2007), "Experimental behavior of circular concrete-filled steel tube stub columns", J. of Constr. Steel Res., 63(2), 165-174. https://doi.org/10.1016/j.jcsr.2006.03.009
- Zhao, X.L., Han, B. and Grzebieta, R.H. (2002), "Plastic mechanism analysis of concrete-filled double-skin (SHS inner and SHS outer) stub columns", Thin-Walled Struct., 40(10), 815-833. https://doi.org/10.1016/S0263-8231(02)00030-7
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