4.7 Article

Repair of RC bridge columns with interlocking spirals and fractured longitudinal bars - An experimental study

Journal

CONSTRUCTION AND BUILDING MATERIALS
Volume 78, Issue -, Pages 405-420

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.conbuildmat.2015.01.010

Keywords

Bridges; CFRP; Concrete columns; Cyclic loading; Fractured bars; Mechanical bar couplers; Repair

Funding

  1. California Department of Transportation [65A0388]
  2. National University Transportation Center
  3. Center for Infrastructure Engineering Studies at Missouri University of Science and Technology [DTRT06-G-0014]

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A technique to repair reinforced concrete (RC) bridge columns containing interlocking spirals and having buckled and/or fractured longitudinal bars was assessed through experimental tests. The repair technique involved removing spirals, removing longitudinal bar segments in the plastic hinge region and replacing them with new bar segments that were mechanically spliced to the existing bars with bar couplers, and applying an externally bonded carbon fiber reinforced polymer (CFRP) jacket in lieu of replacing the spirals. Two 1/2-scale prototype bridge columns repaired using two types of mechanical couplers were investigated in this study. The repaired columns were tested under constant axial loading and slow reversed cyclic lateral loading resulting in combined flexural moment, shear, and torsional moment. Test results show that the repair method was successful in restoring the lateral and torsional strength to both columns. The lateral and torsional deformation capacity was restored to one column, while the other was not able to be assessed due to early termination of testing. This study also provides information on the performance of mechanical bar couplers in plastic hinge regions. (C) 2015 Elsevier Ltd. All rights reserved.

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