Archive of IJHRB


Archive of IJHRB


Vol. - No. Vol.3 - No.3
Date Sep., 2014
Title Design of High Strength Concrete Filled
Tubular Columns For Tall Buildings
Author J. Y. Richard Liew+, M. X. Xiong, and D. X. Xiong
Institutions National University of Singapore, Dept. of Civil and Environmental Engineering, Singapore, 117576
Abstract Ultra-high strength concrete and high tensile steel are becoming very attractive materials for high-rise buildings because of the need to reduce member size and structural self-weight. However, limited test data and design guidelines are available to support the applications of high strength materials for building constructions. This paper presents significant findings from comprehensive experimental investigations on the behaviour of tubular columns in-filled with ultra-high strength concrete at ambient and elevated temperatures. A series of tests was conducted to investigate the basic mechanical properties of the high strength materials, and structural behaviour of stub columns under concentric compression, beams under moment and slender beam-columns under concentric and eccentric compression. High tensile steel with yield strength up to 780 MPa and ultra-high strength concrete with compressive cylinder strength up to 180 MPa were used to construct the test specimens. The test results were compared with the predictions using a modified Eurocode 4 approach. In addition, more than 2000 test data samples collected from literature on concrete filled steel tubes with normal and high strength materials were also analysed to formulate the design guide for implementation in practice.
Keyword Composite structure, Concrete filled steel tube column, High tensile steel, Ultra-high strength concrete, Fire resistance
PP. PP.215~221
Paper File Files(2888 kb) View

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