Implications of Experiments on the Seismic Behavior of Gravity Load Designed RC Beam-to-Column Connections

Author:

Beres Attila1,Pessiki Stephen P.2,White Richard N.3,Gergely Peter3

Affiliation:

1. Englekirk and Sabol Consulting Engineers Inc., 2116 Arlington Avenue, Los Angeles, CA 90018

2. Department of Civil Engineering, IMBT Laboratories, Lehigh University, 117 ATLSS Drive, Bethlehem, PA 18015

3. Department of Civil and Environmental Engineering, 220 Hollister Hall, Cornell University, Ithaca, NY 14853

Abstract

This paper summarizes recent experimental research at Cornell University conducted on the behavior of gravity load designed reinforced concrete building frame components subjected to reversing cyclic loads (simulated seismic effects). Reinforced concrete framing systems, designed primarily for gravity loads, with little or no attention given to lateral load effects, are typically characterized by non-ductile reinforcing details in the joint regions and in the members. The seismic response of connection regions for gravity load design (GLD) frames has received relatively little attention in earlier studies, thus making it difficult to reliably evaluate GLD frames and to properly plan repair or retrofit strategies. Thirty-four full scale bare interior and exterior beam-to-column joints have been tested under reversed cyclic bending to identify the different damage mechanisms and to study the effect of critical details on strength and deformations. The discussion of test results focuses on the definition of joint shear strength factors for GLD frames to complement those provided by ACI-ASCE Committee 352 for frames designed with better details.

Publisher

SAGE Publications

Subject

Geophysics,Geotechnical Engineering and Engineering Geology

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