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Seismic Response of Reactive Powder Concrete Columns Confined with FRP

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Abbassi, M. (2012)Nonlinear finite element modelling of reactive powder concrete columns retrofitted by carbon fiber reinforced polymer. MSc Thesis, Civil Engineering Dept, University of Kurdistan, Sanandaj, Iran.Search in Google Scholar

Abbassi, M. – Dabbagh, H. (2014)Behavior of FRP-confined reactive powder concrete columns under eccentric loading. Journal of Rehabilitation in Civil Engineering 2(1), pp. 46-64.Search in Google Scholar

Abdelouahed, T. (2006)Improved Theoretical solution for interfacial stresses in concrete beams strengthened with FRP plate. International Journal of Solids and Structures 43, pp. 4154-4174.10.1016/j.ijsolstr.2005.03.074Search in Google Scholar

Al-Amery, R. - Al-Mahaidi, R. (2006)Numerical analysis of multilayered CFRP retrofitted RC beams with partial interaction. Composite Structures 75, pp. 479-488.10.1016/j.compstruct.2006.04.014Search in Google Scholar

Aïtcin, P. C. (2000)Cements of yesterday and today concrete of tomorrow. Cement and Concrete Research 30(9), pp. 1349-1359.10.1016/S0008-8846(00)00365-3Search in Google Scholar

Bouchelaghem, H. – Bezazi, A. – Scarpa, F. (2011)Compressive behaviour of concrete cylindrical FRP-confined columns subjected to a new sequential loading technique. Composites Part B: Engineering 42, pp. 1987-1993.10.1016/j.compositesb.2011.05.045Search in Google Scholar

Coronado, C. A. – Lopez, M. M. (2006)Sensitivity analysis of reinforced concrete beams strengthened with FRP laminates. Cement and Concrete Composites 28, pp. 102-114.10.1016/j.cemconcomp.2005.07.005Search in Google Scholar

Dowd, W. M. – Dauriac, C. E. – Adeline, R. (1999)Reactive powder concrete for bridge construction. Proceeding of the 5th ASCE Materials Engineering Congress, Cincinnati, USA.Search in Google Scholar

El-Hacha, R. – Abdelrahman, K. (2013)Slenderness effect of circular concrete specimens confined with SFRP sheets. Composites Part B: Engineering 44, pp. 152-166.10.1016/j.compositesb.2012.06.014Search in Google Scholar

Feng, D. C. – Xu, J. (2018)An efficient fiber beam-column element considering flexure–shear interaction and anchorage bond-slip effect for cyclic analysis of RC structures. Bulletin of Earthquake Engineering 16, pp. 5425–5452.10.1007/s10518-018-0392-ySearch in Google Scholar

GangaRao, H. V. S. – Taly, N. – Vijay, P. V. (2007)Reinforced concrete design with FRP composites. Englewood Cliffs, CRC Press, USA.10.1201/9781420020199Search in Google Scholar

Guidi, G. (2011)Displacement capacity of load-bearing masonry as a basis for seismic design. Ph.D. Thesis, Civil Engineering Dept, University of Toronto, Toronto, Canada.Search in Google Scholar

Ho, J. C. M. – Lam, J. Y. K. – Kwan, A. K. H. (2010)Effectiveness of adding confinement for ductility improvement of high-strength concrete columns. Engineering Structures 32, pp. 714-725.10.1016/j.engstruct.2009.11.017Search in Google Scholar

Jiang, L. – Usmani, A. (2018)Computational performance of beam-column elements in modelling structural members subjected to localised fire. Engineering Structures 156, pp. 490-502.10.1016/j.engstruct.2017.11.008Search in Google Scholar

Jiang, J. F. – Wu, Y. F. (2012)Identification of material parameters for drucker-prager plasticity model for FRP confined circular concrete columns. International Journal of Solids and Structures 49, pp. 445-456.10.1016/j.ijsolstr.2011.10.002Search in Google Scholar

Lee, I. (2002)Complete stress-strain characteristics of high performance concrete. Ph.D. thesis, Civil Engineering Dept, New Jersey Institute of Technology, New Jersey, USA.Search in Google Scholar

Ma, R. – Xiao, Y. (1999)Seismic retrofit and repair of circular bridge columns with advanced composite materials. Earthquake Spectra 15(4), pp. 747-764.10.1193/1.1586070Search in Google Scholar

Malik, A. R. (2007)An investigation into the behavior of reactive powder concrete columns. Ph.D. thesis, School of Civil and Environmental Engineering, The university of New South Wales, Sydney, Australia.Search in Google Scholar

Malik, A. R. – Foster, S. J. (2010)Carbon fiber-reinforced polymer confined reactive powder concrete columns-experimental investigation. ACI Structural Journal 7(3), pp. 263-271.Search in Google Scholar

Mazzoni, S. – McKenna, F. – Scott, M. H. – Fenves, G. L. (2007)OpenSees command language manual. Pacific Earthquake Engineering Research Center, University of California, Berkeley, USA.Search in Google Scholar

Morin, V. - Cohen-Tenoudji, F. – Feylessoufi, A. (2002)Evolution of the capillary network in a reactive powder concrete during hydration process. Cement and Concrete Research 32(12), pp. 1907-1914.10.1016/S0008-8846(02)00893-1Search in Google Scholar

Ozbakkaloglu, T. – Saatcioglu, M. (2006)Seismic behavior of high-strength concrete columns confined by fiber-reinforced polymer tubes. Journal of Composites for Construction ASCE 10(6), pp. 538-549.10.1061/(ASCE)1090-0268(2006)10:6(538)Search in Google Scholar

Purba, B. K. – Mufti, A. A. (1999)Investigation of the behavior of circular concrete columns reinforced with carbon fiber reinforced polymer (CFRP) jackets. Canadian Journal of Civil Engineering 26(5), pp. 590-6.10.1139/l99-022Search in Google Scholar

Spacone, E. – Filippou, F.C. – Taucer, F. F. (1996)Fiber beam-column model for non-linear analysis of RC frames: part I. formulation. Earthquake Engineering and Structural Dynamics 25, pp. 711-725.10.1002/(SICI)1096-9845(199607)25:7<711::AID-EQE576>3.0.CO;2-9Search in Google Scholar

Xiao, Y. (1997)Seismic retrofit of RC circular columns using prefabricated composite jacketing. Journal of Structural Engineering ASCE 123(10), pp. 1357-64.10.1061/(ASCE)0733-9445(1997)123:10(1357)Search in Google Scholar

Yalcin, C. – Saatcioglu, M. (2000) Inelastic analysis of reinforced concrete columns. Computers and Structures 77, pp. 539-555.10.1016/S0045-7949(99)00228-XSearch in Google Scholar

Ye, L. P. – Zhang, K. – Zhao, S. H. – Feng, P. (2003)Experimental study on seismic strengthening of RC columns with wrapped CFRP sheets. Construction and Building Materials 17, pp. 499-506.10.1016/S0950-0618(03)00047-3Search in Google Scholar

Yu, T. – Teng, J. G. – Wong, Y. L. – Dong, S. L. (2010)Finite element modeling of confined concrete-I: drucker-prager type plasticity model. Engineering Structures 32(3), pp. 665-679.10.1016/j.engstruct.2009.11.014Search in Google Scholar

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