참고문헌
- ACI 440.2R-08 (2008), Guide for the Design and Construction of Externally Bonded FRP Systems for Strengthening Concrete Structures, American Concrete Institute, Farmington Hills, Michigan, USA.
- Barton, B., Wobbe, E., Dharani, L.R., Silva, P., Birman, V., Nanni, A., Alkhrdaji, T., Thomas, J. and Tunis, G. (2005), "Characterization of reinforced concrete beams strengthened by steel reinforced polymer and grout (SRP and SRG) composites", Mater. Sci. Eng. A, 412(1-2), 129-136. https://doi.org/10.1016/j.msea.2005.08.151
- Bazant, Z.P. and Oh, B. (1983), "Crack band theory for fracture of concrete", Mater. Struct., 16(3), 155-177.
- Bencardino, F., Spadea, G. and Swamy, R.N. (2002), "Strength and ductility of reinforced concrete beams externally reinforced with carbon fiber fabric", ACI Struct. J., 99(2), 163-171.
- Bencardino, F., Colotti, V., Spadea, G. and Swamy, R.N. (2005), "Shear behavior of reinforced concrete beams strengthened in flexure with bonded carbon fibre reinforced polymers laminates", Can. J. Civil Eng., 32(5), 812-824. https://doi.org/10.1139/l05-027
- Bencardino, F., Spadea, G. and Swamy, R.N. (2007), "The problem of shear in RC beams strengthened with CFRP laminates", Construct. Build. Mater., 21(11), 1997-2006. https://doi.org/10.1016/j.conbuildmat.2006.05.056
- Bencardino, F. and Spadea, G. (2014), "FE modeling of RC beams externally strengthened with innovative materials", Mechanics Research Communications, 58, 88-96. https://doi.org/10.1016/j.mechrescom.2014.02.006
- Brosens, K. and Van Gemert, D. (1999), "Anchorage design for externally bonded carbon fiber reinforced polymer laminates", Proceedings of the 4th International Symposium on FRP Reinforcement for Concrete Structures, ACI International SP 188-56, 635-645, Baltimore, MD, November.
- Casadei, P., Nanni, A. and Alkhrdaji, T. (2005a), "Steel-reinforced polymer: an innovative and promising material for strengthening infrastructures", Concrete Eng. Int., 9(1), 54-56.
- Casadei, P., Nanni, A., Alkhrdaji, T. and Thomas, J. (2005b), "Performance of double-T prestressed concrete beams strengthened with steel reinforced polymer", Adv. Struct. Eng., 8(4), 427-441. https://doi.org/10.1260/136943305774353124
- CNR-DT 200 R1/2013 (2013), Guide for the Design and Construction of Externally Bonded FRP Systems for Strengthening Existing Structures - Materials, RC and PC structures, masonry structures, Italian National Research Council, Rome, Italy.
- D'Ambrisi, A., Feo, L. and Focacci, F. (2012), "Bond-slip relations for PBO-FRCM materials externally bonded to concrete", Compos. Part B: Eng., 43, 2938-2949. https://doi.org/10.1016/j.compositesb.2012.06.002
- D'Ambrisi, A., Feo, L. and Focacci, F. (2013), "Experimental analysis on bond between PBO-FRCM strengthening materials and concrete", Compos. Part B: Eng., 44, 524-532. https://doi.org/10.1016/j.compositesb.2012.03.011
- Demakos, C.B., Repapis, C.C. and Drivas, D. (2013), "Investigation of structural response of reinforced concrete beams strengthened with anchored FRPs", The Open Construction and Building Technology Journal", 7, 146-157. https://doi.org/10.2174/1874836801307010146
- Ferracuti, B., Savoia, M. and Mazzotti, C. (2006), "A numerical model for FRP-concrete delamination", Compos. Part B: Eng., 37, 256-364.
- Ebead, U. and Saeed, H. (2014), "Numerical modeling of shear strengthened reinforced concrete beams using different systems", J. Compos. Construct., 18(1), 04013031(11).
- Eurocode 2 (2004), "Design of Concrete Structures - Part 1-1: General Rules and Rules for Buildings", EN 1992-1-1: 2004, European Committee for Standardization.
- Fib Model Code (2010), Fib model code for concrete structures 2010, Fib Bulletin No. 65 and 66, fib (CEBFIP), Lausanne, Switzerland.
- Fib 14 (2001), Externally bonded FRP reinforcement for RC structures, Technical Report Bulletin No. 14, fib (CEB-FIP), Lausanne, Switzerland.
- Fib 35 (2006), Retrofitting of concrete structures by externally bonded FRPs with emphasis on seismic applications, Technical Report Bulletin No. 35, fib (CEB-FIP), Lausanne, Switzerland.
- Huang, X., Birman, V., Nanni, A., and Tunis, G. (2004), "Properties and potential for application of steel reinforced polymer and steel reinforced grout composites", Compos. Part B: Eng., 36(1), 73-82.
- ISIS Design manual No. 4, FRP rehabilitation of reinforced concrete structures, ISIS Canada.
- Jumaat, M.Z. and Ashraful Alam, M.D. (2010), "Experimental and numerical analysis of end anchored steel plate and CFRP laminate flexurally strengthened reinforced concrete (r. c.) beams", Int. J. Phys. Sci., 5(2), 132-144.
- Kimia S.A. (2009), Unidirectional high-strength carbon steel fibre reinforcing mesh, Kimisteel 1500, ST2-0610, Ready-to-use fine granulometry mortar for SRG systems, Kimisteel LM, ST2-0610, Synthetic resin used specifically to improve the chemical and physical properties of single-component mortars, Kimitech B2, ST9-0607.
- Lopez, A., Galati, N., Alkhrdaji, T. and Nanni, A. (2007), "Strengthening of a reinforced concrete bridge with externally bonded steel reinforced polymer (SRP)", Composites Part B: Eng., 38(4), 429-436. https://doi.org/10.1016/j.compositesb.2006.09.003
- Lu, X.Z., Ye, L.P., Teng, J.G. and Jiang, J.J. (2005a). "Meso-scale finite element model for FRP sheets/plates bonded to concrete", Eng. Struct., 27(4), 564-575. https://doi.org/10.1016/j.engstruct.2004.11.015
- Lu, X.Z., Teng, J.G., Yea, L.P. and Jiang, J.J. (2005b), "Bond-slip models for FRP sheets/plates bonded to concrete", Eng. Struct., 27, 920-937. https://doi.org/10.1016/j.engstruct.2005.01.014
- LUSAS Finite Element Analysis Ltd, version 14.5 (2010), "engineering analysis software", "theory manual 1", "theory manual 2", "element reference manual", Forge House, 66 High Street, Kingston upon Thames, Surrey, KT1 1HN, United Kingdom.
- Monti, M, Renzelli, M. and Luciani, P. (2003), "FRP adhesion in uncracked and cracked concrete zones", Proceedings of the 6th International Symposium on FRP Reinforcement for Concrete Structures, Singapore, July.
- Ombres, L. (2012), "Debonding analysis of reinforced concrete beams strengthened with fibre reinforced cementitious mortar", Eng. Fract. Mech., 81, 94-109. https://doi.org/10.1016/j.engfracmech.2011.06.012
- Pecce, M., Ceroni, F., Prota, A. and Manfredi, G. (2006), "Response prediction of RC beams externally bonded with steel-reinforced polymers", J. Compos. Construct., 10(3), 195-203. https://doi.org/10.1061/(ASCE)1090-0268(2006)10:3(195)
- Prota, A., Tan, K.Y., Nanni, A., Manfredi, G. and Pecce, M. (2006), "Performance of RC shallow beams externally bonded with steel reinforced polymer", ACI Struct. J., 103(2), 163-170.
- Savoia, M., Farracuti, B. and Mazzotti, D. (2003), "Non-linear bond-slip law for FRP-concrete interface", Proceedings of the 6th international symposium on FRP reinforcement for concrete structures, 163-72.
- Spadea, G., Bencardino, F. and Swamy, R.N. (2000), "Optimizing the performance characteristics of beams strengthened with bonded CFRP laminates", Mater. Struct., 33(226), 119-126. https://doi.org/10.1007/BF02484166
- Wobbe, E., Silva, P.F., Barton, B.L., Dharani, L.R., Birman, V., Nanni, A., Alkhrdaji, T., Thomas, J. and Tunis, T. (2004), "Flexural capacity of RC beams externally bonded with SRP and SRG", Proceedings of the Society for the Advancement of Materials and Process Engineering, International, Symposium and Exhibition, Long Beach, Ca, May.
- Zhang, L. and Teng, J.G. (2010), "Finite element prediction of interfacial stresses in structural members bonded with a thin plate", Eng. Struct., 32, 459-471. https://doi.org/10.1016/j.engstruct.2009.10.008
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