This paper examines the behaviour of circular steel tubes infilled with concrete incorporating recycled rubber particles. The rubberised concrete-filled steel tubes are tested under lateral cyclic deformations with and without co-existing axial loading. A detailed account of the cyclic tests on twelve specimens is provided together with complementary material and section tests. The rubber replacement ratio is varied up to a relatively high value of 60%, under axial loads reaching up to 30% of the nominal capacity. Hollow steel members are also tested for comparison purposes. The experimental results are discussed in detail with respect to the member stiffness, capacity, ductility, energy dissipation and failure mechanisms. Although high rubber ratios lead to a considerable loss in concrete strength, the test results show that the corresponding reduction in member capacity is much less significant due to the contribution of the steel tube and the comparatively high confinement effects mobilised within the rubberised concrete. In comparison with the members incorporating normal concrete, the rubberised concrete members are found to exhibit up to about 10% and 17% increase in ductility and energy dissipation, respectively, depending on the rubber content. Analytical treatments are then used to suggest simplified relationships for predicting the stiffness, moment-axial strength interaction, plastic hinge length and local ductility criteria. Overall, the test results demonstrate the favourable inelastic cyclic performance of circular steel tubes infilled with rubberised concrete and provide valuable experimental data. The proposed expressions for key response parameters also offer the basis for developing practical assessment and design methods.
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Department of Civil and Environmental Engineering, Imperial College London, United KingdomDepartment of Civil and Environmental Engineering, Imperial College London, United Kingdom
Elghazouli, A.Y.
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Mujdeci, A.
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Bompa, D.V.
Guo, Y.T.
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Department of Civil and Environmental Engineering, Imperial College London, United Kingdom
Institute for Ocean Engineering, Tsinghua Shenzhen International Graduate School, ChinaDepartment of Civil and Environmental Engineering, Imperial College London, United Kingdom
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Vietnam Natl Univ, Ho Chi Minh City Univ Technol, Fac Civil Engn, 268 Ly Thuong Kiet St,Dist 10, Ho Chi Minh City 70000, VietnamVietnam Natl Univ, Ho Chi Minh City Univ Technol, Fac Civil Engn, 268 Ly Thuong Kiet St,Dist 10, Ho Chi Minh City 70000, Vietnam
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Univ Putra Malaysia, Fac Engn, Dept Civil Engn, Serdang 43400, Selangor, MalaysiaUniv Putra Malaysia, Fac Engn, Dept Civil Engn, Serdang 43400, Selangor, Malaysia
Midhin, Abdulrahman Khaleel
Nabilah, Abu Bakar
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Univ Putra Malaysia, Fac Engn, Dept Civil Engn, Serdang 43400, Selangor, MalaysiaUniv Putra Malaysia, Fac Engn, Dept Civil Engn, Serdang 43400, Selangor, Malaysia
Nabilah, Abu Bakar
Nasir, Noor Azline Mohd
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Univ Putra Malaysia, Fac Engn, Dept Civil Engn, Serdang 43400, Selangor, MalaysiaUniv Putra Malaysia, Fac Engn, Dept Civil Engn, Serdang 43400, Selangor, Malaysia
Nasir, Noor Azline Mohd
Safiee, Nor Azizi
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Univ Putra Malaysia, Fac Engn, Dept Civil Engn, Serdang 43400, Selangor, MalaysiaUniv Putra Malaysia, Fac Engn, Dept Civil Engn, Serdang 43400, Selangor, Malaysia