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2023 | OriginalPaper | Chapter

Load-Carrying Capacity of CFST Columns: Current Design Rules Assessment

Authors : X. L. Ou, J. C. M. Ho, M. H. Lai

Published in: Proceedings of The 17th East Asian-Pacific Conference on Structural Engineering and Construction, 2022

Publisher: Springer Nature Singapore

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Abstract

Concrete-filled-steel-tube (CFST) column, which consists of a hollow steel tube in-filled with concrete, has been widely adopted in the construction of infrastructures, tall buildings and bridges owing to its superior strength, stiffness and ductility contributed to the composite action. Currently, design equations have been proposed to predict the load-carrying capacity of CFST columns in design codes such as American Concrete Institute (ACI), American Institute of Steel Construction (AISC), Chinese Standard and Eurocode 4 (EC4), etc. However, as reported by some research studies, these codes could not predict the load-carrying capacity of CFST columns accurately, especially when the material strengths of other parameters exceeded their limitations specified in the codes. Besides, few studies have been carried out to compare the serviceability between different design codes with different parameters systematically. To fill up the above research gap, this study provides a comprehensive study to evaluate the applicability of the above current design codes. To start with, an experimental database consisting of 177 test results of CFST columns was assembled. Then the design equations stipulated in the current design codes were briefly introduced. Lastly, the load-carrying capacity obtained from the database was compared with the design strength. Results indicated that the design strengths predicted by ACI and AISC were the lowest since the confinement effect was not considered. Among all the above codes, EC4 made the most accurate prediction.

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Literature
go back to reference ACI.: Building Code Requirements for Structural Concrete (ACI 318-99). Detroit (mi): American concrete institute (ACI) (1999) ACI.: Building Code Requirements for Structural Concrete (ACI 318-99). Detroit (mi): American concrete institute (ACI) (1999)
go back to reference Alrebeh, S.K., Ekmekyapar, T.: Structural performance of short concrete-filled steel tube columns with external and internal stiffening under axial compression. Structures 20, 702–716 (2019)CrossRef Alrebeh, S.K., Ekmekyapar, T.: Structural performance of short concrete-filled steel tube columns with external and internal stiffening under axial compression. Structures 20, 702–716 (2019)CrossRef
go back to reference Alrebeh, S.K., Ekmekyapar, T.: Structural behavior of concrete-filled steel tube short columns stiffened by external and internal continuous spirals. Structures 22, 98–108 (2019)CrossRef Alrebeh, S.K., Ekmekyapar, T.: Structural behavior of concrete-filled steel tube short columns stiffened by external and internal continuous spirals. Structures 22, 98–108 (2019)CrossRef
go back to reference ANSI/AISC.: Specification for Structural Steel Buildings (2016) ANSI/AISC.: Specification for Structural Steel Buildings (2016)
go back to reference Cai, C.S.: Modern Steel Tube Confined Concrete Structures. China Communications Press, Beijing, China [in chinese] (2003) Cai, C.S.: Modern Steel Tube Confined Concrete Structures. China Communications Press, Beijing, China [in chinese] (2003)
go back to reference EC4.: Design of composite steel and concrete structures. Part 1-1: General rules and rules for buildings. En-1994-1-1. British Standards Institution, European Committee for Standardization (2004) EC4.: Design of composite steel and concrete structures. Part 1-1: General rules and rules for buildings. En-1994-1-1. British Standards Institution, European Committee for Standardization (2004)
go back to reference EN 1992-1-2.: Eurocode 2—Design of Concrete Structures, part 1–2: General rules—structural fire design (2014) EN 1992-1-2.: Eurocode 2—Design of Concrete Structures, part 1–2: General rules—structural fire design (2014)
go back to reference GB 50936-2014.: Technical Code for Concrete Filled Steel Tubular Structures. China Architecture and Building Press, Beijin (2014) GB 50936-2014.: Technical Code for Concrete Filled Steel Tubular Structures. China Architecture and Building Press, Beijin (2014)
go back to reference Giakoumelis, G., Lam, D.: Axial capacity of circular concrete-filled tube columns. J. Constr. Steel Res. 60(7), 1049–1068 (2004)CrossRef Giakoumelis, G., Lam, D.: Axial capacity of circular concrete-filled tube columns. J. Constr. Steel Res. 60(7), 1049–1068 (2004)CrossRef
go back to reference Han, L.H., Yao, G.H.: Experimental behaviour of thin-walled hollow structural steel (hss) columns filled with self-consolidating concrete (scc). Thin-Walled Struct. 42(9), 1357–1377 (2004)CrossRef Han, L.H., Yao, G.H.: Experimental behaviour of thin-walled hollow structural steel (hss) columns filled with self-consolidating concrete (scc). Thin-Walled Struct. 42(9), 1357–1377 (2004)CrossRef
go back to reference Han, L.H., Yao, G.H., Zhao, X.L.: Tests and calculations for hollow structural steel (hss) stub columns filled with self-consolidating concrete (scc). J. Constr. Steel Res. 61(9), 1241–1269 (2005)CrossRef Han, L.H., Yao, G.H., Zhao, X.L.: Tests and calculations for hollow structural steel (hss) stub columns filled with self-consolidating concrete (scc). J. Constr. Steel Res. 61(9), 1241–1269 (2005)CrossRef
go back to reference He, L., Zhao, Y., Lin, S.: Experimental study on axially compressed circular cfst columns with improved confinement effect. J. Constr. Steel Res. 140, 74–81 (2018)CrossRef He, L., Zhao, Y., Lin, S.: Experimental study on axially compressed circular cfst columns with improved confinement effect. J. Constr. Steel Res. 140, 74–81 (2018)CrossRef
go back to reference Ho, J.C.M., et al.: Residual properties of steel slag coarse aggregate concrete after exposure to elevated temperatures. Constr. Build. Mater. 316, 125751 (2022)CrossRef Ho, J.C.M., et al.: Residual properties of steel slag coarse aggregate concrete after exposure to elevated temperatures. Constr. Build. Mater. 316, 125751 (2022)CrossRef
go back to reference Ho, J.C.M., Ou, X.L., Chen, M.T., Wang, Q., Lai, M.H.: A path dependent constitutive model for cfft column. Eng. Struct. 210, 210367 (2020)CrossRef Ho, J.C.M., Ou, X.L., Chen, M.T., Wang, Q., Lai, M.H.: A path dependent constitutive model for cfft column. Eng. Struct. 210, 210367 (2020)CrossRef
go back to reference Ho, J.C.M., Ou, X.L., Li, C.W., Song, W., Wang, Q., Lai, M.H.: Uni-axial behaviour of expansive cfst and dscfst columns. Eng. Struct. 237, 112193 (2021)CrossRef Ho, J.C.M., Ou, X.L., Li, C.W., Song, W., Wang, Q., Lai, M.H.: Uni-axial behaviour of expansive cfst and dscfst columns. Eng. Struct. 237, 112193 (2021)CrossRef
go back to reference Huang, C.S., et al.: Axial load behavior of stiffened concrete-filled steel columns. J. Struct. Eng. ASCE 128(9), 1222–1230 (2002)CrossRef Huang, C.S., et al.: Axial load behavior of stiffened concrete-filled steel columns. J. Struct. Eng. ASCE 128(9), 1222–1230 (2002)CrossRef
go back to reference Johansson, M.: The efficiency of passive confinement in cft columns. Steel Compos. Struct. 2(5), 379–396 (2002)CrossRef Johansson, M.: The efficiency of passive confinement in cft columns. Steel Compos. Struct. 2(5), 379–396 (2002)CrossRef
go back to reference Lai, M.H., et al.: Shrinkage design model of concrete incorporating wet packing density. Constr. Build. Mater. 280, 122448 (2021)CrossRef Lai, M.H., et al.: Shrinkage design model of concrete incorporating wet packing density. Constr. Build. Mater. 280, 122448 (2021)CrossRef
go back to reference Lai, M.H., Binhowimal, S.A.M., Griffith, A.M., Wang, Q., Chen, Z.Y., Ho, J.C.M.: Shrinkage, cementitious paste volume, and wet packing density of concrete. Struct. Concr. 23, 488–504 (2022)CrossRef Lai, M.H., Binhowimal, S.A.M., Griffith, A.M., Wang, Q., Chen, Z.Y., Ho, J.C.M.: Shrinkage, cementitious paste volume, and wet packing density of concrete. Struct. Concr. 23, 488–504 (2022)CrossRef
go back to reference Lai, M.H., Chen, M.T., Ren, F.M., Ho, J.C.M.: Uni-axial behaviour of externally confined uhscfst columns. Thin-Walled Structures 142, 19–36 (2019)CrossRef Lai, M.H., Chen, M.T., Ren, F.M., Ho, J.C.M.: Uni-axial behaviour of externally confined uhscfst columns. Thin-Walled Structures 142, 19–36 (2019)CrossRef
go back to reference Lai, M.H., Chen, Z.H., Wang, Y.H., Ho, J.C.M.: Effect of fillers on the mechanical properties and durability of steel slag concrete. Constr. Build. Mater. 335, 127495 (2022)CrossRef Lai, M.H., Chen, Z.H., Wang, Y.H., Ho, J.C.M.: Effect of fillers on the mechanical properties and durability of steel slag concrete. Constr. Build. Mater. 335, 127495 (2022)CrossRef
go back to reference Lai, M.H., Griffith, A.M., Hanzic, L., Wang, Q., Ho, J.C.M.: Interdependence of passing ability, dilatancy and wet packing density of concrete. Constr. Build. Mater. 270, 121440 (2021)CrossRef Lai, M.H., Griffith, A.M., Hanzic, L., Wang, Q., Ho, J.C.M.: Interdependence of passing ability, dilatancy and wet packing density of concrete. Constr. Build. Mater. 270, 121440 (2021)CrossRef
go back to reference Lai, M.H., Hanzic, L., Ho, J.C.M.: Fillers to improve passing ability of concrete. Struct. Concr. 20(1), 185–197 (2019)CrossRef Lai, M.H., Hanzic, L., Ho, J.C.M.: Fillers to improve passing ability of concrete. Struct. Concr. 20(1), 185–197 (2019)CrossRef
go back to reference Lai, M.H., Ho, J.C.M.: Confinement effect of ring-confined concrete-filled-steel-tube columns under uni-axial load. Eng. Struct. 67, 123–141 (2014)CrossRef Lai, M.H., Ho, J.C.M.: Confinement effect of ring-confined concrete-filled-steel-tube columns under uni-axial load. Eng. Struct. 67, 123–141 (2014)CrossRef
go back to reference Lai, M.H., Ho, J.C.M.: A theoretical axial stress-strain model for circular concrete-filled-steel-tube columns. Eng. Struct. 125, 124–143 (2016)CrossRef Lai, M.H., Ho, J.C.M.: A theoretical axial stress-strain model for circular concrete-filled-steel-tube columns. Eng. Struct. 125, 124–143 (2016)CrossRef
go back to reference Lai, M.H., Ho, J.C.M.: An analysis-based model for axially loaded circular CFST columns. Thin-Walled Struct. 119, 770–781 (2017)CrossRef Lai, M.H., Ho, J.C.M.: An analysis-based model for axially loaded circular CFST columns. Thin-Walled Struct. 119, 770–781 (2017)CrossRef
go back to reference Lai, M.H., Huang, Z.C., Wang, C.T., Wang, Y.H., Chen, L.J., Ho, J.C.M.: Effect of fillers on the behaviour of low carbon footprint concrete at and after exposure to elevated temperatures. J. Build. Eng. 51, 104117 (2022)CrossRef Lai, M.H., Huang, Z.C., Wang, C.T., Wang, Y.H., Chen, L.J., Ho, J.C.M.: Effect of fillers on the behaviour of low carbon footprint concrete at and after exposure to elevated temperatures. J. Build. Eng. 51, 104117 (2022)CrossRef
go back to reference Lai, M.H., Liang, Y.W., Wang, Q., Ren, F.M., Chen, M.T., Ho, J.C.M.: A stress-path dependent stress-strain model for FRP-confined concrete. Eng. Struct. 203, 109824 (2020)CrossRef Lai, M.H., Liang, Y.W., Wang, Q., Ren, F.M., Chen, M.T., Ho, J.C.M.: A stress-path dependent stress-strain model for FRP-confined concrete. Eng. Struct. 203, 109824 (2020)CrossRef
go back to reference Lai, M.H., Song, W., Ou, X.L., Chen, M.T., Wang, Q., Ho, J.C.M.: A path dependent stress-strain model for concrete-filled-steel-tube column. Eng. Struct. 211, 110312 (2020)CrossRef Lai, M.H., Song, W., Ou, X.L., Chen, M.T., Wang, Q., Ho, J.C.M.: A path dependent stress-strain model for concrete-filled-steel-tube column. Eng. Struct. 211, 110312 (2020)CrossRef
go back to reference Lai, M.H., et al.: Effect of fillers on the behaviour of heavy-weight concerte made by iron sand. Constr. Build. Mater. 332, 127357 (2022)CrossRef Lai, M.H., et al.: Effect of fillers on the behaviour of heavy-weight concerte made by iron sand. Constr. Build. Mater. 332, 127357 (2022)CrossRef
go back to reference Lee, S.H., Uy, B., Kim, S.H., Choi, Y.H., Choi, S.M.: Behavior of high-strength circular concrete-filled steel tubular (CFST) column under eccentric loading. J. Constr. Steel Res. 67(1), 1–13 (2011)CrossRef Lee, S.H., Uy, B., Kim, S.H., Choi, Y.H., Choi, S.M.: Behavior of high-strength circular concrete-filled steel tubular (CFST) column under eccentric loading. J. Constr. Steel Res. 67(1), 1–13 (2011)CrossRef
go back to reference Lin, S.Q., Zhao, Y.G., He, L.S.: Stress paths of confined concrete in axially loaded circular concrete-filled steel tube stub columns. Eng. Struct. 173, 1019–1028 (2018)CrossRef Lin, S.Q., Zhao, Y.G., He, L.S.: Stress paths of confined concrete in axially loaded circular concrete-filled steel tube stub columns. Eng. Struct. 173, 1019–1028 (2018)CrossRef
go back to reference Lu, Z.H., Zhao, Y.G.: Suggested empirical models for the axial capacity of circular cft stub columns. J. Constr. Steel Res. 66(6), 850–862 (2010)CrossRef Lu, Z.H., Zhao, Y.G.: Suggested empirical models for the axial capacity of circular cft stub columns. J. Constr. Steel Res. 66(6), 850–862 (2010)CrossRef
go back to reference Mander, J.B., Priestley, M.J.N., Park, R.: Theoretical stress-strain model for confined concrete. J. Struct. Eng. 114(8), 1804–1826 (1988)CrossRef Mander, J.B., Priestley, M.J.N., Park, R.: Theoretical stress-strain model for confined concrete. J. Struct. Eng. 114(8), 1804–1826 (1988)CrossRef
go back to reference Petrus, C., Hamid, H.A., Ibrahim, A., Parke, G.: Experimental behaviour of concrete filled thin walled steel tubes with tab stiffeners. J. Constr. Steel Res. 66(7), 915–922 (2010)CrossRef Petrus, C., Hamid, H.A., Ibrahim, A., Parke, G.: Experimental behaviour of concrete filled thin walled steel tubes with tab stiffeners. J. Constr. Steel Res. 66(7), 915–922 (2010)CrossRef
go back to reference Rashid, M.A., Mansur, M.A., Paramasivam, P.: Correlations between mechanical properties of high-strength concrete. J. Mater. Civ. Eng. ASCE 14(3), 230–238 (2002)CrossRef Rashid, M.A., Mansur, M.A., Paramasivam, P.: Correlations between mechanical properties of high-strength concrete. J. Mater. Civ. Eng. ASCE 14(3), 230–238 (2002)CrossRef
go back to reference Sakino, K., Nakahara, H., Morino, S., Nishiyama, I.: Behavior of centrally loaded concrete-filled steel-tube short columns. J. Struct. Eng. ASCE 130(2), 180–188 (2004)CrossRef Sakino, K., Nakahara, H., Morino, S., Nishiyama, I.: Behavior of centrally loaded concrete-filled steel-tube short columns. J. Struct. Eng. ASCE 130(2), 180–188 (2004)CrossRef
go back to reference Schneider, S.P.: Axially loaded concrete-filled steel tubes. J. Struct. Eng. ASCE 124(10), 1125–1138 (1998)CrossRef Schneider, S.P.: Axially loaded concrete-filled steel tubes. J. Struct. Eng. ASCE 124(10), 1125–1138 (1998)CrossRef
go back to reference Teng, J.G., Hu, Y.M., Yu, T.: Stress-strain model for concrete in frp-confined steel tubular columns. Eng. Struct. 49, 156–167 (2013)CrossRef Teng, J.G., Hu, Y.M., Yu, T.: Stress-strain model for concrete in frp-confined steel tubular columns. Eng. Struct. 49, 156–167 (2013)CrossRef
go back to reference Xue, J.Q., Briseghella, B., Chen, B.C.: Effects of debonding on circular cfst stub columns. J. Constr. Steel Res. 69(1), 64–76 (2012)CrossRef Xue, J.Q., Briseghella, B., Chen, B.C.: Effects of debonding on circular cfst stub columns. J. Constr. Steel Res. 69(1), 64–76 (2012)CrossRef
go back to reference Yu, Z.W., Ding, F.X., Cai, C.S.: Experimental behavior of circular concrete-filled steel tube stub columns. J. Constr. Steel Res. 63(2), 165–174 (2007)CrossRef Yu, Z.W., Ding, F.X., Cai, C.S.: Experimental behavior of circular concrete-filled steel tube stub columns. J. Constr. Steel Res. 63(2), 165–174 (2007)CrossRef
go back to reference Yu, Z.W., Ding, F.X., Lin, S.: Researches on behavior of high-performance concrete filled tubular steel short columns. J. Build. Struct. 23(2), 41–47 (2002). (In Chinese) Yu, Z.W., Ding, F.X., Lin, S.: Researches on behavior of high-performance concrete filled tubular steel short columns. J. Build. Struct. 23(2), 41–47 (2002). (In Chinese)
go back to reference Zhang, S.M., Wang, Y.Y.: Failure modes of short columns of high-strength concrete-filled steel tubes. Chin. Civil Eng. J. 37(9), 1–10 (2004). (In Chinese) Zhang, S.M., Wang, Y.Y.: Failure modes of short columns of high-strength concrete-filled steel tubes. Chin. Civil Eng. J. 37(9), 1–10 (2004). (In Chinese)
go back to reference Zhong, S.T.: The Unified Theory of Concrete-Filled-Steel-Tube Structures—Research and Application. Tsinghua University Press, Beijing, China (in chinese) (2006) Zhong, S.T.: The Unified Theory of Concrete-Filled-Steel-Tube Structures—Research and Application. Tsinghua University Press, Beijing, China (in chinese) (2006)
Metadata
Title
Load-Carrying Capacity of CFST Columns: Current Design Rules Assessment
Authors
X. L. Ou
J. C. M. Ho
M. H. Lai
Copyright Year
2023
Publisher
Springer Nature Singapore
DOI
https://doi.org/10.1007/978-981-19-7331-4_107