Performance of Double-T Prestressed Concrete Beams Strengthened with Steel Reinforcement Polymer

Author:

Casadei Paolo1,Nanni Antonio2,Alkhrdaji Tarek3,Thomas Jay4

Affiliation:

1. Department of Architecture and Civil Engineering, University of Bath, Bath, BA2 7AY, UK

2. Department of Civil, Architectural and Environmental Engineering, 223 Engineering Research Lab, University of Missouri-Rolla, Rolla, MO-65401 USA

3. Structural Engineer, Strengthening Division of the Structural Group

4. Vice President, Structural Preservation Systems Inc

Abstract

In the fall of 2002, a two-storey parking garage in Bloomington, Indiana, built with precast prestrestressed concrete (PC) double-T beams, was decommissioned due to a need for increased parking-space. This led to the opportunity of investigating the flexural performance of the PC double-T beams, upgraded in the positive moment region with steel reinforced polymer (SRP) composite materials, representing the first case study where this material has been applied in the field. SRP makes use of high-strength steel cords embedded in an epoxy resin. This paper reports on the test results to failure of three beams: a control specimen, a beam strengthened with one ply of SRP and a third beam strengthened with two plies of SRP anchored at both ends with SRP U-wraps. Results showed that SRP can significantly improve both flexural capacity and enhance pseudo-ductility. Preliminary analytical work shows that the same approach used for externally bonded fiber reinforced polymer (FRP) can be satisfactorly used for SRP.

Publisher

SAGE Publications

Subject

Building and Construction,Civil and Structural Engineering

Reference13 articles.

1. ACI 318–02 (2002). Building Code Requirements for Structural Concrete and Commentary (318R-02), Published by the American Concrete Institute, Farmington Hills, MI, pp. 443.

2. ACI 440.2R-02 (2002). Guide for the Design and Construction of Externally Bonded FRP Systems for Strengthening Concrete Structures, Published by the American Concrete Institute, Farmington Hills, MI, pp. 45.

3. ASTM D 3039 (2002). Test Method for Tensile Properties of Fiber Resin Composites, Published by the American Society for Testing and Materials, West Conshohocken, PA, pp. 13.

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