TECHNICAL PAPERS
Dec 1, 2007

Structural Upgrading of Masonry Columns by Using Composite Reinforcements

Publication: Journal of Composites for Construction
Volume 11, Issue 6

Abstract

Emerging techniques that use fiber-reinforced polymer (FRP) composites for strengthening and conservation of historic masonry are becoming increasingly accepted. In the last decades steel plates or wood frames were used for external confinement in containing the lateral dilation of masonry columns subjected to axial loads. In the last years FRP epoxy bonded strips or jackets were also employed to increase strength and ductility with encouraging results in terms of mechanical behavior and cost effectiveness. The behavior of masonry columns confined with FRP and subjected to axial compression is studied in this paper. An extended experimental investigation is presented in order to show the mechanical behavior of circular masonry columns built with calcareous blocks that may be commonly found in Italy and all over Europe in historical buildings. Different stacking schemes were used to build the columns, aiming to simulate the most common situations in existing masonry structures. Carbon FRP sheets were applied as external reinforcement; different amounts and different schemes of confining reinforcement were studied. The experiments include a new reinforcement technique made by using injected FRP bars through the columns cross section. Such a solution can be considered in place of a more traditional confinement, when external reinforcement must be avoided, or in addition to external reinforcement when an improved confinement effect is required. The structural behavior of masonry columns damaged under different levels of load and strengthened by using FRP reinforcements, was also investigated. Experimental results revealed the effectiveness of the FRP confinement for masonry columns, also for columns that were strongly predamaged before strengthening. A computation of the ultimate load was conducted using the Italian National Research Council recommendations to show an application of the design approach recently proposed in Italy. An existing analytical model, previously developed by the writers, was applied for computation of expected experimental values.

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Acknowledgments

This investigation was supported by the RELUIS Research Project. The writers would acknowledge EPO Gmbh and MAPEI spa for the materials supplied for this investigation.

References

Aiello, M. A., Micelli, F., and Valente, L. (2005). “Circular masonry columns confined with FRP.” Proc., Composites in Construction 2005—3rd Int. Conf., Lyon, France, 485–492.
American Concrete Institute (ACI). (2002). “Design and construction of externally bonded FRP systems for strengthening concrete structures.” ACI 440.2R.02, Farmington Hills, Mich.
Bieker, C., Seim, W., and Stürz, J. (2002). “Post-strengthening of masonry columns by use of fiber-reinforced polymers.” Proc., ICCI’02—3rd Int. Conf. of Composites in Infrastructure (CD-ROM), San Francisco.
Chaallal, O., Hassan, M., and LeBlanc, M. (2006).“Circular columns confined with FRP: Experimental versus predictions of models and guidelines.” J. Compos. Constr., 10(1), 4–12.
CNR–Italian Council of National Research. (2004). “Guide for the design and construction of externally bonded FRP systems for strengthening existing structures.” Technical Document 200/2004, Advisory Committee on Technical Recommendations for Construction of National Research Council, Rome.
Faella, C., Martinelli, E., Paciello, S., and Nigro, E. (2004). “Experimental tests and theoretical models on tuff masonry bricks and columns confined with C-FRP sheets.” Proc., IMTCR04 Int. Conf. on Innovative Materials for Construction and Restoration, Vol. 2, Lecce, Italy, 343–359.
FIB. (2001). “Externally bonded FRP reinforcement for RC structures.” Technical Rep. No. TG 9.3.
Japan Society of Civil Engineers (JSCE). (2001). “Recommendations for upgrading of concrete structures with use of continuous fiber sheets.” Concrete Engineering Series 41, K. Maruyama, ed., Tokyo.
Kog, Y. C., Ong, K. C. G., Yu, C. H., and Sreekanth, P. V. (2001). “Reinforced concrete jacketing for masonry columns with axial loads.” ACI Mater. J., 98(2), 105–115.
Krevaikas, T. D., and Triantafillou, T. (2005). “Masonry confinement with fiber-reinforced polymers.” J. Compos. Constr., 9(2), 128–135.
Micelli, F., De Lorenzis, L., and La Tegola, A. (2004), “FRP-confined masonry columns under axial loads: Analytical model and experimental results.” Masonry International Journal, Ed., British Masonry Society, 17(3), 95–108.

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Go to Journal of Composites for Construction
Journal of Composites for Construction
Volume 11Issue 6December 2007
Pages: 650 - 658

History

Received: Apr 12, 2006
Accepted: Feb 27, 2007
Published online: Dec 1, 2007
Published in print: Dec 2007

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Authors

Affiliations

Maria Antonietta Aiello [email protected]
Associate Professor, Dept. of Innovation Engineering, Univ. of Lecce, Via per Monteroni, 73100 Lecce, Italy. E-mail: [email protected]
Francesco Micelli [email protected]
Assistant Professor, Dept. of Innovation Engineering, Univ. of Lecce, Via per Monteroni, 73100 Lecce, Italy. E-mail: [email protected]
Luca Valente [email protected]
Ph.D. Candidate, Dept. of Innovation Engineering, Univ. of Lecce, Via per Monteroni, 73100 Lecce, Italy. E-mail: [email protected]

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