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Report - PEER - University of California, Berkeley

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that the defining demand using a nonlinear function <strong>of</strong> maximum joint shear strainand number <strong>of</strong> load cycles <strong>of</strong>fers the potential for reduced model uncertainty;however, insufficient data are available to define this model for all methods <strong>of</strong> repair.Additional data are required defining the progression <strong>of</strong> damage in older joints as afunction <strong>of</strong> the three primary EDPs: drift, number <strong>of</strong> load cycles and joint shear strain.REFERENCESAlire, D. (2002). “Seismic Evaluation <strong>of</strong> Existing Unconfined RC Joints.” M.S. Thesis.Seattle: <strong>University</strong> <strong>of</strong> Washington.ACI Com. 546. (1996). ACI 546R-96: Concrete Repair Guide. Farmington Hills: ACI.Applied Technology Council. (1998). FEMA 308: Repair <strong>of</strong> Earthquake DamagedConcrete and Masonry Wall Buildings.” Washington D.C.: FEMA.C<strong>of</strong>fman, H., and J. Kapur. (2003). WA Dept. <strong>of</strong> Transportation. In-person interview.Filiatrault, A., and I. Lebrun. (1996). “Seismic Rehabilitation <strong>of</strong> Reinforced ConcreteJoints by Epoxy Pressure Injection Technique”. ACI SP-160: Seismic Rehabilitation<strong>of</strong> Concrete Structures: Farmington Hills: ACI. 73-92.Jara, M., Hernandez, Garcia, and Robles. (1989). “The Mexico Earthquake <strong>of</strong> September19, 1985-Typical Cases <strong>of</strong> Repair and Strengthening <strong>of</strong> Concrete Buildings.”Earthquake Spectra 5(1): 175-181.Joh, O., Goto, and Shibata. (1991a). “Influence <strong>of</strong> Transverse Joint and BeamReinforcement and Relocation <strong>of</strong> Plastic Hinge Region on Beam-Column JointStiffness Deterioration.” ACI SP-123: Design <strong>of</strong> Beam-Column Joints for SeismicResistance. Ed., J. Jirsa. Farmington Hills: ACI.Joh, O., Goto, and Shibata. (1991b). “Behavior <strong>of</strong> Reinforced Concrete Beam-ColumnJoints with Eccentricity.” ACI SP-123: Design <strong>of</strong> Beam-Column Joints for SeismicResistance. Ed., J. Jirsa. Farmington Hills: ACI.Karayannis, C. G., C. E. Chalioris, and K. K. Sideris (1998). “Effectiveness <strong>of</strong> RC Beam-Column Connection Repair using Epoxy Resin Injections.” Journal <strong>of</strong> EarthquakeEngineering 2(2): 217-240.Meinheit, D., and J. Jirsa. (1977). The Shear Strength <strong>of</strong> Reinforced Concrete Beam-Column Joints. Austin: <strong>University</strong> <strong>of</strong> Texas, Dept. <strong>of</strong> Civil Engineering. 217 pp.Mosier, W. G. (2000). “Seismic Assessment <strong>of</strong> Reinforced Concrete Beam-ColumnJoints.” M.S. Thesis. Seattle: <strong>University</strong> <strong>of</strong> Washington. 218 pp.Pessiki, S. P., Conley, Gergely and White. (1990). Seismic Behavior <strong>of</strong> Lightly-ReinforcedConcrete Column and Beam-Column Joint Details. NCEER-90-0014. Buffalo:National Center for Earthquake Engineering.Runacres, R. (2003). Contech, Inc. Telephone interview.Savage, S. (2003). Coughlin, Porter, and Lundeen. In-person interview.Tasai, A. (1992). “Effective Repair with Resin for Bond Failure <strong>of</strong> RC Members.”Proceedings <strong>of</strong> the 10WCEE. 5211-5216.Walker, S. (2001). “Seismic Performance <strong>of</strong> Existing RC Beam-Column Joints.” MSThesis. Seattle: <strong>University</strong> <strong>of</strong> Washington.220

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