Frictional Effects in Structural Behavior of No-End-Connected Steel-Jacketed RC Columns: Experimental Results and New Approaches to Model Numerical and Analytical Response
Publication: Journal of Structural Engineering
Volume 143, Issue 8
Abstract
Steel jacketing of reinforced concrete (RC) columns is a common retrofitting technique used to restore bearing and deformation capacity of buildings presenting structural deficiencies. For practical reasons, steel angles are in several cases arranged leaving a gap with the end beams or slabs. Despite this disconnection, the angles are still able to support a non-negligible portion of load because of the frictional forces developed along the column-angle contact interface. In these cases, the definition of computational numerical and analytical models for the assessment of reinforced cross sections becomes more complex and must be handled with care. The actual load-carrying capacity of the angles is a function of lateral confinement pressure, cohesive strength, and the friction coefficient between the materials. This paper presents first the results of an original experimental campaign on RC column specimens with and without steel jacketing subjected to compressive axial and eccentric tests. Subsequently, a new approach is proposed to define a plane fiber-section model of the reinforced cross section accounting for the frictional action occurring along the column-angle interfaces. An equivalent stress-strain constitutive model for the angles is calibrated and validated through comparison with experimental results. Finally, a simple analytical stress-block procedure to derive continuous and simplified axial force bending moment domains is illustrated as a method for the hand-verification of reinforced cross sections.
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References
Adam, J. M., et al. (2007). “Behaviour of axially loaded RC columns strengthened by steel angles and strips.” Steel. Compos. Struct., 7(5), 405–419.
Adam, J. M., Ivorra, S., Pallarès, F. J., Giménez, E., and Calderón, P. A. (2009). “Axially loaded RC columns strengthened by steel caging: Finite element modelling.” Constr. Build. Mater., 23(6), 2265–2276.
Badalamenti, V., Campione, G., and Mangiavillano, M. L. (2010). “Simplified model for compressive behaviour of concrete columns strengthened with steel angles and strips.” J. Eng. Mech., 230–238.
Baltay, P., and Gielsvik, A. (1990). “Coefficient of friction for steel on concrete at high normal stress.” J. Mater. Civ. Eng., 46–49.
Braga, F., and Gigliotti, M. (2006). “Analytical stress-strain relationship for concrete confined by steel stirrups and/or FRP jackets.” J. Struct. Eng., 1402–1416.
Calderón, P. A., Adam, J. M., Ivorra, S., Pallarès, F. J., and Giménez, E. (2009). “Design strength of axially loaded RC columns strengthened by steel caging.” Mater. Des., 30(10), 4069–4080.
CEN (European Committee for Standardization). (2005a). “Design of composite steel and concrete structures. Part 1: General rules for buildings.” Eurocode 4, Brussels, Belgium.
CEN (European Committee for Standardization). (2005b). “Design of structures for earthquake resistance. Part 1: General rules, seismic actions and rules for buindings.” Eurocode 4, Brussels, Belgium.
Karthik, M. M., and Mander, J. B. (2011). “Stress-block parameters for unconfined and confined concrete based on a stress-strain model.” J. Struct. Eng., 270–273.
Kent, D. C., and Park, R. (1971). “Flexural members with confined concrete.” J. Struct. Div., 97(7), 1969–1990.
Mander, J. B., Priestley, M. J., and Park, R. N. (1988). “Theoretical stress-strain model for confined concrete.” J. Struct. Eng., 1804–1826.
McKenna, F., Fenves, G. L., and Scott, M. H. (2000). Open system for earthquake engineering simulation, Univ. of California, Berkeley, CA.
Montuori, R., and Piluso, V. (2009). “Reinforced concrete columns strengthened with angles and battens subjected to eccentric load.” Eng. Struct., 31(2), 539–550.
Nagaprasad, P., Sahoo, D. R., and Rai, D. C. (2009). “Seismic strengthening of R.C. columns using external steel cage.” Earthquake Eng. Struct. Dyn., 38(14), 1563–1586.
NTC. (2008). “Nuove norme tecniche per le costruzioni.”, Rome.
Tarabia, A. M. (2014). “Strengthened of RC columns by steel angles and strips.” Alexandria Eng. J., 53(3), 615–626.
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©2017 American Society of Civil Engineers.
History
Received: Apr 25, 2016
Accepted: Jan 13, 2017
Published ahead of print: Mar 24, 2017
Published online: Mar 25, 2017
Published in print: Aug 1, 2017
Discussion open until: Aug 25, 2017
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