TECHNICAL PAPERS
Jul 15, 2002

Behavior of Masonry-Infilled Nonductile Reinforced Concrete Frames

Publication: Journal of Structural Engineering
Volume 128, Issue 8

Abstract

This paper presents research on the behavior of a type of building popular in high seismic zones with a lateral-load-resisting system consisting of masonry-infilled reinforced concrete (RC) frames. Older buildings of this type typically were designed for gravity loads in combination with insufficient or no lateral loads, therefore they do not meet current seismic code requirements. Also, the participation of infill panels in the lateral load resistance of RC frames was not recognized in the original design, often resulting in an overly conservative design. In an attempt to determine the seismic vulnerability of this type of structure, an experimental program was carried out to evaluate the behavior of five half-scale, single-story laboratory models with different numbers of bays. The results indicated that infilled RC frames exhibit significantly higher ultimate strength, residual strength, and initial stiffness than bare frames without compromising any ductility in the load–deflection response. Furthermore, the number of bays appears to be influential with respect to the peak and residual capacity, the failure mode, and the shear stress distribution.

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References

Al-Chaar, G. (1998). “Non-ductile behavior of reinforced concrete frames with masonry infill panels subjected to in-plane loading.” PhD thesis, Univ. of Illinois at Chicago, Chicago.
Fiorato, A. E., Sozen, M. A., and Gamble, W. L. (1970). “An investigation of the interaction of reinforced concrete frames with masonry filler walls.” Civil Eng. Studies, Structural Research Series Rep. No. 370, Univ. of Illinois, Urbana, Ill.
Gulan, P., and Sozen, M. A.(1999). “Procedure for determining seismic vulnerability of building structures.” ACI Struct. J. 96(3), 336–342.
Holmes, M.(1963). “Combined loading in infilled frames.” Proc. Inst. Civ. Eng., Struct. Build., 25(6621), 31–38.
Mehrabi, A. B., Shing, P. B., Schuller, M. P., and Noland, J. L. (1996). “Performance of masonry-infilled reinforced concrete frames under in-plane lateral load.” Structural Engineering and Structural Mechanics Research Series, Rep. No. CU/SR, Univ. of Colorado at Boulder, Boulder, Colo.
Polyakov, S. V. (1956). “On the interactions between masonry filler walls and enclosing frame when loaded in the plane of the wall.” Translations in Earthquake Engineering Research Institute, Cairns G. L., trans., Moscow.
Smith, B. S., (1962). “Lateral stiffness of infilled frames.” J. Struct. Div., ASCE, 88(3355).
Stafford Smith, B. S. (1969). “A method of analysis for infilled frames.” Proc. Inst. Civ. Eng., Struct. Build., 44.
American Concrete Institute (ACI). ACI 318-51, Detroit.

Information & Authors

Information

Published In

Go to Journal of Structural Engineering
Journal of Structural Engineering
Volume 128Issue 8August 2002
Pages: 1055 - 1063

History

Received: Aug 2, 1999
Accepted: Jan 7, 2002
Published online: Jul 15, 2002
Published in print: Aug 2002

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Authors

Affiliations

Ghassan Al-Chaar, M.ASCE
Research Structural Engineer, Construction Engineering Research Laboratories, Champaign, IL 61826.
Mohsen Issa, M.ASCE
Associate Professor, Dept. of Civil and Materials Engineering, Univ. of Illinois at Chicago, Chicago, IL 60612.
Steve Sweeney, M.ASCE
Senior Structural Engineer, Construction Engineering Research Laboratories, Champaign, IL 61826.

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