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      KCI등재 SCIE SCOPUS

      Experimental study on axial compressive behavior of hybrid FRP confined concrete columns

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      https://www.riss.kr/link?id=A103596623

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      다국어 초록 (Multilingual Abstract)

      In this paper, the mechanical property of CFRP, BFRP, GFRP and their hybrid FRP was experimentally studied. The elastic modulus and tensile strength of CFRP, BFRP, GFRP and their hybrid FRP were tested. The experimental results showed that the elastic...

      In this paper, the mechanical property of CFRP, BFRP, GFRP and their hybrid FRP was experimentally studied. The elastic modulus and tensile strength of CFRP, BFRP, GFRP and their hybrid FRP were tested. The experimental results showed that the elastic modulus of hybrid FRP agreed well with the theoretical rule of mixture, which means the property of hybrid composites are linear with the volumes of the corresponding components while the tensile strength did not. The bearing capacity, peak strain, stress-strain relationship of circular concrete columns confined by CFRP, BFRP, GFRP and hybrid FRP subjected to axial compression were recorded. And the confinement effect of hybrid FRP on concrete columns was analyzed. The test results showed that the bearing capacity and ductility of concrete columns were efficiently improved through hybrid FRP confinement. A strength model and a stress-strain relationship model of hybrid FRP confined concrete columns were proposed. The proposed stress-strain model was shown to be capable of providing accurate prediction of the axial compressive strength of hybrid FRP confined concrete compared with Teng et al. (2002) model, Karbhari and Gao (1997) model and Miyachi et al. (1999) model. The modified stress-strain model was also suitable for single FRP confinement cases and it was so concise in form and didn't have piecewise fitting, which would be easy for use in structural design.

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      참고문헌 (Reference)

      1 Xu, S. D., "Study on mechanical properties of concrete circular column confined by HFRP under axial compression" Guangdong University of Technology 2012

      2 Hai, N. D., "Structural behavior of double-lap joints of steel splice plates bolted/bonded to pultruded hybrid CFRP/GFRP laminates" 30 (30): 347-359, 2012

      3 Meier, U., "Strengthening of Structures with Advanced Composites, Alternative Materials for Reinforcement and Prestressing of Concrete, Clarke" Chapman & Hall 1993

      4 Djeddi, F., "Strengthening in flexure-shear of RC beams with hybrid FRP systems : Experiments and numerical modeling" 35 (35): 1642-1660, 2016

      5 Miyauchi, K., "Strengthening effects of concrete columns with carbon fiber sheet" 21 (21): 143-150, 1999

      6 Mosallam, A., "Strength and ductility of RC slabs strengthened with hybrid high-performance composite retrofit system" 36 (36): 70-80, 2012

      7 Teng, J. G., "Recycling of coarsely-crushed concrete for use in FRP tubular columns" 2012

      8 Saadatmanesh, H., "RC beams strengthened with FRP plates II : Analysis and parametric study" 117 (117): 3434-3455, 1991

      9 Hosny, A., "Performance of reinforced concrete beams strengthened by hybrid FRP laminates" 28 (28): 906-913, 2006

      10 Padanattil, A., "Novel hybrid composites based on glass and sisal fiber for retrofitting of reinforced concrete structures" 133 : 146-153, 2017

      1 Xu, S. D., "Study on mechanical properties of concrete circular column confined by HFRP under axial compression" Guangdong University of Technology 2012

      2 Hai, N. D., "Structural behavior of double-lap joints of steel splice plates bolted/bonded to pultruded hybrid CFRP/GFRP laminates" 30 (30): 347-359, 2012

      3 Meier, U., "Strengthening of Structures with Advanced Composites, Alternative Materials for Reinforcement and Prestressing of Concrete, Clarke" Chapman & Hall 1993

      4 Djeddi, F., "Strengthening in flexure-shear of RC beams with hybrid FRP systems : Experiments and numerical modeling" 35 (35): 1642-1660, 2016

      5 Miyauchi, K., "Strengthening effects of concrete columns with carbon fiber sheet" 21 (21): 143-150, 1999

      6 Mosallam, A., "Strength and ductility of RC slabs strengthened with hybrid high-performance composite retrofit system" 36 (36): 70-80, 2012

      7 Teng, J. G., "Recycling of coarsely-crushed concrete for use in FRP tubular columns" 2012

      8 Saadatmanesh, H., "RC beams strengthened with FRP plates II : Analysis and parametric study" 117 (117): 3434-3455, 1991

      9 Hosny, A., "Performance of reinforced concrete beams strengthened by hybrid FRP laminates" 28 (28): 906-913, 2006

      10 Padanattil, A., "Novel hybrid composites based on glass and sisal fiber for retrofitting of reinforced concrete structures" 133 : 146-153, 2017

      11 Samaan, M., "Model of concrete confined by fiber composites" 126 (126): 1025-1031, 1998

      12 Li, L. J., "Interfacial stress analysis of RC beams strengthened with hybrid CFS and GFS" 23 (23): 2394-2401, 2009

      13 Guo, Y. C., "Influence of hollow imperfections in adhesive on the interfacial bond behaviors of FRP-plated RC beams" 30 (30): 597-606, 2012

      14 Li, D., "Identification of failure mechanisms for CFRP-confined circular concrete-filled steel tubular columns through acoustic emission signals" 18 (18): 525-540, 2016

      15 Mahdikhani, M., "Finite element modeling of the influence of FRP techniques on the seismic behavior of historical arch stone bridge" 18 (18): 99-112, 2016

      16 Vanaja, A., "Fibre fraction effects on thermal degradation behaviour of GFRP, CFRP and hybrid composites" 21 (21): 1389-1398, 2002

      17 Farids, M. N., "FRP-encased concrete as a structural material" 34 (34): 191-202, 1982

      18 Teng, J. G., "FRP-Strengthened RC Structures" John Wiley & Sons, Ltd. 2002

      19 Sundarraja, M. C., "Experimental study on CFST(concrete filled steel tubular)members strengthened by CFRP composites under compression" 72 (72): 75-83, 2012

      20 Lau, D., "Experimental study of hybrid FRP reinforced concrete beams" 32 (32): 3857-3865, 2010

      21 Su, L., "Experimental study and modelling of CFRP-confined damaged and undamaged square RC columns under cyclic loading" 21 (21): 411-427, 2016

      22 Guo, Y. C., "Experimental studies on axially loaded concrete columns confined by different materials" 400 (400): 513-518, 2009

      23 Zhao, J. L., "Experimental behavior of FRP-concrete-steel double-skin tubular beams" 2013

      24 Chen, Z. F., "Evaluation of CFRP, GFRP and BFRP material systems for the strengthening of RC slabs" 27 (27): 1233-1243, 2008

      25 Lam, L., "Design-oriented stress-strain model for FRP-confined concrete" 17 (17): 471-489, 2003

      26 Bouchelaghem, H., "Compressive behaviour of concrete cylindrical FRP-confined columns subjected to a new sequential loading technique" 42 (42): 1987-1993, 2011

      27 Karbhai, V. M., "Composite jacketed concrete under uniaxial compression-verifi cation of simple design equations" 9 (9): 185-193, 1997

      28 Li, J., "Behaviour of concrete beam-column connections reinforced with hybrid FRP sheet" 57 (57): 357-365, 2002

      29 Chen, G. M., "Behaviour of FRPto-concrete interfaces between two adjacent cracks : A numerical investigation on the effect of bondline damage" 28 (28): 584-591, 2012

      30 Rousakis, T. C., "Adequately FRP confined reinforced concrete columns under axial compressive monotonic or cyclic loading" 45 (45): 957-975, 2012

      31 Richart, F. E., "A study of the failure of concrete under combined compressive stresses" University of Illinois Bulletin 185-, 1928

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