Author:
Kalogeropoulos George,Tsonos Alexander-Dimitrios
Abstract
The existing non-ductile RC structures built prior to the 1960s–1970s were mainly conceived to carry only vertical loads. As a result, the columns of these structures demonstrate poor overall hysteresis behavior during strong earthquakes, dominated by brittle shear or/and premature excessive slipping of the inadequately lap-spliced reinforcement. In the present study, the effectiveness of two different strengthening systems (including either the wrapping of the columns by carbon-fiber-reinforced polymer textile or the use of thin high-strength reinforced concrete jackets), was experimentally and analytically investigated. The main variables examined were the strengthening material, the length of the lap splices and the amount of confinement provided by the jackets. Three cantilever column specimens were constructed without incorporating modern design code requirements for preserving seismic safety and structural integrity. Subsequently, the specimens were strengthened and subjected to earthquake-type loading. Their hysteresis performances were compared, while also evaluated with respect to the response of two similar original specimens and the behavior of a control one with continuous reinforcement, tested in a previous study. The predictions of the proposed analytical formulation for the hysteresis behavior of the strengthened specimens were satisfactorily verified by the experimental results.
Subject
Mechanics of Materials,Biomaterials,Civil and Structural Engineering,Ceramics and Composites
Reference46 articles.
1. Design of Reinforced Concrete Structures according to Eurocodes;Tsonos,2017
2. Seismic Design of Reinforced Concrete and Masonry Buildings;Paulay,1992
3. Shear Retrofit of Hollow Bridge Piers with Carbon Fiber-Reinforced Polymer Sheets
4. Repair of earthquake-damaged RC columns with FRP wraps;Saadatmanesh;ACI Struct. J.,1997
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