Earthquakes and Structures
Volume 12, Number 6, 2017, pages 699-712
DOI: 10.12989/eas.2017.12.6.699
Experimental and analytical evaluation of a low-cost seismic retrofitting method for masonry-infilled non-ductile RC frames
Jarun Srechai, Sutat Leelataviwat, Arnon Wongkaew and Panitan Lukkunaprasit
Abstract
This study evaluates the effectiveness of a newly developed retrofitting scheme for masonry-infilled non-ductile RC frames experimentally and by numerical simulation. The technique focuses on modifying the load path and yield mechanism of the infilled frame to enhance the ductility. A vertical gap between the column and the infill panel was strategically introduced so that no shear force is directly transferred to the column. Steel brackets and small vertical steel members were then provided to transfer the interactive forces between the RC frame and the masonry panel. Wire meshes and high-strength mortar were provided in areas with high stress concentration and in the panel to further reduce damage. Cyclic load tests on a large-scale specimen of a single-bay, single-story, masonry-infilled RC frame were carried out. Based on those tests, the retrofitting scheme provided significant improvement, especially in terms of ductility enhancement. All retrofitted specimens clearly exhibited much better performances than those stipulated in building standards for masonry-infilled structures. A macro-scale computer model based on a diagonal-strut concept was also developed for predicting the global behavior of the retrofitted masonry-infilled frames. This proposed model was effectively used to evaluate the global responses of the test specimens with acceptable accuracy, especially in terms of strength, stiffness and damage condition.
Key Words
non-ductile frame; masonry infill; seismic retrofitting; cyclic test; macro model
Address
Jarun Srechai, Arnon Wongkaew: Department of Civil Engineering, Burapha University, 169 Saen-Sook, Chonburi, 20131, Thailand
Sutat Leelataviwat: Department of Civil Engineering, King Mongkut\'s University of Technology Thonburi,126 Thung Khru, Bangkok, 10140, Thailand
Panitan Lukkunaprasit: Department of Civil Engineering, Chulalongkorn University, 254 Phatumwan, Bangkok, 10330, Thailand