TECHNICAL PAPERS
Jul 15, 2002

Evaluation and Carbon Fiber Reinforced Polymer Strengthening of Existing Garage: Case Study

Publication: Journal of Composites for Construction
Volume 6, Issue 3

Abstract

The concrete-repair fiber reinforced polymer technology emerged in the United States during the past 10 years. Since 1995, carbon fiber reinforced polymer (CFRP) has been applied to strengthen concrete decks of a troubled posttensioned garage in Atlanta. During the construction of the garage, design deficiencies were found. A remedial repair, involving heavily reinforced, 7.6 cm (3 in.) thick Gunite (Shotcrete) beams, applied to the underside of the slab between drop panels in the east-west (E-W) direction, was developed in 1984. Since then, delamination of Gunite beams and other structural problems repeatedly occurred. Epoxy injection and other limited repairs were done over the years in an attempt to remediate the problems. In 2000, due to the growing delamination concerns, backed up with nondestructive impact-echo testing results, and due to the newest set of structural analyses that showed additional design deficiencies, Simpson Gumpertz & Heger developed a new and comprehensive remedial program. The first phase of this program included an in-depth mechanical in situ load test program to study the strength and stiffness performance of the existing typical slab spans, including the effects of Gunite beams, the loss of Gunite beams due to delamination, and the CFRP strengthing of spans. The tests showed that the CFRP repair of E-W spans with delaminated Gunite beams is warranted and that it performs well. The performance of the existing typical spans in the north-south direction was found to be acceptable without any repairs. Further monitoring of the performance of Gunite beams is required, and additional CFRP strengthening will be done periodically. In addition, structural deficiencies of the typical second-level end bays were repaired using additional steel framing supports.

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References

American Concrete Institute (ACI). (1999). “Building code requirements of structural concrete.” ACI 318-99, Detroit.
American Concrete Institute (ACI). (2000). “Guide for the design and construction of externally bonded FRP systems for strengthening concrete structures.” ACI 440F, Detroit.
Mettermeyer, M., and Nanni, A. (1999). “Guidelines for rapid load testing of concrete structural members.” Center for Infrastructure Engineering Studies, Univ. of Missouri–Rolla, Rolla, Mo.

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Go to Journal of Composites for Construction
Journal of Composites for Construction
Volume 6Issue 3August 2002
Pages: 184 - 193

History

Received: Jul 3, 2001
Accepted: Jan 15, 2002
Published online: Jul 15, 2002
Published in print: Aug 2002

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Authors

Affiliations

Milan Vatovec
Simpson, Gumpertz, and Heger, Inc., 297 Broadway, Arlington, MA 02474.
Paul L. Kelley
Sipson, Gumpertz, and Heger, Inc., 297 Broadway, Arlington, MA 02474.
Tarek Alkhrdaji
Structural Group, 7455 New Ridge Rd., Ste. T, Hanover, MD 21076.
Antonio Nanni
Professor, Dept. Civil Engineering, Univ. of Missouri—Rolla, 224 Engineering Research Lab., Rolla, MO 65409.

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