Browse > Article
http://dx.doi.org/10.12989/scs.2016.22.5.1141

Behavior of concrete-filled double skin steel tube beam-columns  

Hassan, Maha M. (Structural Engineering Department, Cairo University)
Mahmoud, Ahmed A. (Structural Engineering Department, Cairo University)
Serror, Mohammed H. (Structural Engineering Department, Cairo University)
Publication Information
Steel and Composite Structures / v.22, no.5, 2016 , pp. 1141-1162 More about this Journal
Abstract
Concrete-filled double skin steel tube (CFDST) beam-columns are widely used in industrial plants, subways, high-rise buildings and arch bridges. The CFDST columns have the same advantages as traditional CFT members. Moreover, they have lighter weight, higher bending stiffness, better cyclic performance, and have higher fire resistance capacities than their CFT counterparts. The scope of this study is to develop finite element models that can predict accepted capacities of double skin concrete-filled tube columns under the combined effect of axial and bending actions. The analysis results were studied to determine the distribution of stresses among the different components and the effect of the concrete core on the outer and inner steel tube. The developed models are first verified against the available experimental data. Accordingly, an extensive parametric study was performed considering different key factors including load eccentricity, slenderness ratio, concrete compressive strength, and steel tube yield strength. The results of the performed parametric study are intended to supplement the experimental research and examine the accuracy of the available design formulas.
Keywords
beam-columns; concrete-filled tube; double-skin; parametric study;
Citations & Related Records
Times Cited By KSCI : 3  (Citation Analysis)
연도 인용수 순위
1 ACI (2014), Building Code Requirements for Reinforced Concrete; ACI 318-14, American Concrete Institute, Detroit, MI, USA.
2 AISC (2010), Specification for Structural Steel Buildings; ANSI/AISC 360, American Institute of Steel Construction, Chicago, IL, 2010.
3 Ansys Release 12.0 (YEAR), Theory Reference for Ansys and Ansys Workbench; ANSYS, Inc., Southpointe, 275 Technology Drive, Canonsburg, PA, USA.
4 Elchalakani, M., Zhao, X.L. and Grzebieta, R.H. (2002), "Tests on concrete filled double-skin (CHS outer and SHS inner) composite short columns under axial compression", Thin-Wall. Struct., 40(5), 415-441.   DOI
5 Pagoulatou, M., Sheehan, T., Dai, X.H. and Lam, D. (2014), "Finite element analysis on the capacity of circular concrete-filled double-skin steel tubular (CFDST) stub columns", J Eng. Struct., 72, 102-112.   DOI
6 Ren, Q.X., Hou, C., Lam, D. and Han, L.H. (2014), "Experiments on the bearing capacity of tapered concrete filled DOUBLE SKIN STEEL tubular (CFDST) stub columns", Steel Compos. Struct., Int. J., 17(5), 667-686.   DOI
7 Tao, Z. and Han, L.H. (2006), "Behaviour of concrete-filled double skin rectangular steel tubular beam-columns", J. Const. Steel Res., 62(7), 631-646.   DOI
8 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. Constr. Steel Res., 60(8), 1129-1158.   DOI
9 Zhao, X.L., Grzebieta, R.H. and Elchalakani, M. (2002), "Tests of concrete-filled double skin CHS composite stub columns", Steel Comp. Struct., Int. J., 2(2), 129-142.   DOI
10 Uenaka, K. and Kitoh, H. (2009), "Bending-shear behavior of deep concrete filled double steel tubular beam", Proceedings of the 6th International Conference on Advances in Steel Structures, Hong Kong, December, pp. 498-505.
11 Uenaka, K. and Kitoh, H. (2011), "Mechanical behavior of concrete filled double skin tubular circular deep beams", Thin-Wall. Struct., 49(2), 256-263   DOI
12 Uenaka, K., Kitoh, H. and Keiichiro, S. (2008a), "Concrete filled double skin tubular members subjected to bending", Steel and Compos. Struct., Int. J., 8(4), 297-312.   DOI
13 Huang, H., Han, L.H., Zhong, T. and Zhao, X.L. (2010), "Analytical behaviour of concrete-filled double skin steel tubular (CFDST) stub columns", J. Construct. Steel Res., 66(4), 542-555.   DOI
14 Uenaka, K., Shimizu, M. and Kitoh, H. (2008b), "Experimental study on concrete filled double steel tubular beam under bending and shear", Proceedings of the Japan Concrete Institute, 30(3), 1321-1326. [In Japanese]
15 Han, L.H., Tao, Z., Hong, H. and Zhao, X.L. (2004), "Concrete-filled double skin (SHS outer and CHS inner) steel tubular beam-columns", Thin-Walled Struct., 42(9), 1329-1355.   DOI
16 Han, L.H., Huang, H., Tao, Z. and Zhao, X.L. (2006), "Concrete-filled double skin steel tubular (CFDST) beam-columns subjected to cyclic bending", J. Eng. Struct., 28(12), 1698-1714.   DOI
17 Han, L.H., Huang, H. and Zhao, X.L. (2009a), "Analytical behaviour of concrete-filled double skin steel tubular (CFDST) beam-columns under cyclic loading", Thin-Wall. Struct., 47(6-7), 668-680.   DOI
18 Han, L.H., Li, Y.J., Liao, F.Y. and Tao, Z. (2009b), "Influence of long-term loading on the performance of concrete-filled double skin steel tubular columns: Experiments", Proceedings of the 6th International Conference on Advances in Steel Structures, Hong Kong, December.
19 Han, L.H., Li, W. and Bjorhovde, R. (2014), "Developments and advanced applications of concrete-filled steel tubular(CFST) structures: Members", J. Const. Steel Res., 100, 211-228.   DOI
20 Ho, J.C.M. and Dong, C.X. (2014), "Simplified design model for uni-axially loaded double-skinned concrete-filled-steel-tubular columns with external confinement", J. Adv. Steel Res., 10(2), 179-199.
21 Lin, M.L. and Tsai, K.C. (2001), "Behavior of double-skinned composite steel tubular columns subjected to combined axial and flexural loads", Proceedings of the 1st International Conference on Steel and Composite Structures, Pusan, Korea, June, pp. 1145-1152.
22 Lu, H., Zhao, H. and Han, L.H. (2011), "FE modelling and fire resistance design of concrete filled double skin tubular columns", J. Construct. Steel Res., 67(11), 1733-1748.   DOI
23 Uenaka, K., Kitoh, H. and Sonoda, K. (2010), "Concrete filled double skin circular stub columns under compression", Thin-Wall. Struct., 48(1), 19-24.   DOI
24 Yagishita, F., Kitoh, H., Sugimoto, M., Tanihira, T. and Sonoda, K. (2000), "Double skin composite tubular columns subjected to cyclic horizontal force and constant axial force", Proceedings of the 6th International Conference on Steel and Concrete Composite Structures, Los Angeles, CA, USA, March, pp. 497-503.
25 Yu, X., Tao, Z., Han, L.H. and Uy, B. (2009), "Residual strength of concrete-filled double-skin steel tubular stub columns after exposure to fire", Proceedings of the 9th International Conference on Steel Concrete Composite and Hybrid Structures, Leeds, UK, July, pp. 483-488.