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International Journal of Architectural Heritage
Conservation, Analysis, and Restoration
Volume 17, 2023 - Issue 9
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Research Article

Experimental Investigation of Axial Compression in Composite Strengthened Historical Timber Columns

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Pages 1428-1445 | Received 24 Aug 2021, Accepted 05 Feb 2022, Published online: 23 Feb 2022

References

  • A, S. H., C. D. Zhou, and L. G. Yang. 2021. Experimental investigation on axial compression behavior of timber columns strengthened with composite reinforcement method. China Civil Engineering Journal 54 (2):1–9. (in Chinese).
  • Chun, Q., Y. Zhang, and J. W. Pan. 2013a. Experimental on axial compression properties of circular timber columns strengthened with near-surface mounted CFRP rods. Journal of Architecture and Civil Engineering 30 (3):24–28. (in Chinese).
  • Chun, Q., Y. Zhang, and J. W. Pan. 2013b. Experimental study on mechanical properties of circular timber columns strengthened with near-surface mounted CFRP sheets under axial compression. Industrial Construction 43 (7):91–95. (in Chinese).
  • Ciniņa, I., E. Zīle, and O. Zīle. 2012. Mechanical behavior of concrete columns confined by basalt FRP windings. Mechanics of Composite Materials 48 (5):539–46. doi:10.1007/s11029-012-9298-y.
  • Eid, R., and P. Paultre. 2017. Compressive behavior of FRP-confined reinforce concrete columns. Engineering Structures 132:518–30. doi:10.1016/j.engstruct.2016.11.052.
  • Fossetti, M., G. Minafò, and M. Papia. 2015. Flexural behaviour of glulam timber beams reinforced with FRP cords. Construction and Building Materials 95:54–64. doi:10.1016/j.conbuildmat.2015.07.116.
  • GB 50728 (2011). Technical code for safety appraisal of engineering structural strengthening materials. China Architecture and Building Press. (in Chinese).
  • GB/T 1499.2 (2018). Steel for reinforcement of concrete-Part 2: Hot rolled ribbed bars. China Architecture and Building Press. (in Chinese).
  • GB/T 3354. (2014). Test method for tensile properties of orientation fiber reinforced polymer matrix composite materials. China Architecture and Building Press. (in Chinese).
  • GB/T 50329. (2012). Standard for methods testing of timber structures. China Architecture and Building Press. (in Chinese).
  • Gentry, T. 2011. Performance of glued-laminated timbers with FRP shear and flexural reinforcement. Journal of Composites for Construction 15 (5):861–70. doi:10.1061/(ASCE)CC.1943-5614.0000206.
  • Janke, L., C. Czaderski, J. Ruth, and M. Motavalli. 2009. Experiments on the residual load-bearing capacity of prestressed confined concrete columns. Engineering Structures 31 (10):2247–56. doi:10.1016/j.engstruct.2009.04.006.
  • Lam, L., and J. G. Teng. 2003. Design-oriented stress-strain model for FRP-confined concrete. Construction and Building Materials 17 (6–7):471–89. doi:10.1016/S0950-0618(03)00045-X.
  • Li, P., and Y. Wu. 2016. Stress–strain behavior of actively and passively confined concrete under cyclic axial load. Composite Structures 149:369–84. doi:10.1016/j.compstruct.2016.04.033.
  • Li, X. M., Q. F. Xu, L. Zhu, Y. F. Lu, and R. Z. Tang. 2009. Experimental research on CFRP-strengthened old timber columns. Earthquake Resistant Engineering and Retrofitting 31 (4):55–59. (in Chinese).
  • Lim, J., and T. Ozbakkaloglu. 2015. Investigation of the influence of the application path of confining pressure: Tests on actively confined and FRP-confined concretes. Journal of Structural Engineering 141 (8):04014203. doi:10.1061/(ASCE)ST.1943-541X.0001177.
  • Lim, J., T. Ozbakkaloglu, A. Gholampour, T. Bennett, and R. Sadeghi. 2016. Finite-element modeling of actively confined normal-strength and high-strength concrete under uniaxial, biaxial, and triaxial compression. Journal of Structural Engineering 142 (11):04016113. doi:10.1061/(ASCE)ST.1943-541X.0001589.
  • Lu, W., Z. Ling, Q. Geng, W. Liu, H. Yang, and K. Yue. 2015. Study on flexural behaviour of glulam beams reinforced by Near Surface Mounted (NSM) CFRP laminates. Construction and Building Materials 91:23–31. doi:10.1016/j.conbuildmat.2015.04.050.
  • Luca, A. D., F. Nardone, F. Matta, A. Nanni, G. P. Lignola, and A. Prota. 2011. Structural evaluation of full-scale FRP-confined reinforced concrete columns. Journal of Composites for Construction 15 (1):112–23. doi:10.1061/(ASCE)CC.1943-5614.0000152.
  • Ma, J. X., P. Hu, X. M. Jiang, and M. Hu. 2005. Experimental research on axial compressive behavior for timber columns strengthened with CFRP. Industrial Construction 35 (8):40–44. (in Chinese).
  • Mortazavi, A. A., K. Pilakoutas, and K. S. Son. 2003. RC column strengthening by lateral pre-tensioning of FRP. Constriction and Building Materials 17 (6–7):491–97. doi:10.1016/S0950-0618(03)00046-1.
  • Motavalli, M., C. Czaderski, and K. Pfyl-Lang. 2011. Prestressed CFRP for strengthening of reinforced concrete structures: Recent developments at Empa, Switzerland. Journal of Composites for Construction 15 (2):194–205. doi:10.1061/(ASCE)CC.1943-5614.0000125.
  • Ouyang, L. J., and F. Xu. 2017. Review on the effective ultimate tensile strain of FRP for FRP-confined concrete columns under various factors. Fiber Reinforced Plastics/Composites 10:94–103. (in Chinese).
  • Ozbakkaloglu, T., J. Lim, and T. Vincent. 2013. FRP-confined concrete in circular sections: Review and assessment of stress–strain models. Engineering Structures 49:1068–88. doi:10.1016/j.engstruct.2012.06.010.
  • Pellegrino, C., and C. Modena. 2010. Analytical model for FRP confinement of concrete columns with and without internal steel reinforcement. Journal of Composites for Construction 14 (6):693–705. doi:10.1061/(ASCE)CC.1943-5614.0000127.
  • Raftery, G., and F. Kelly. 2015. Basalt FRP rods for reinforcement and repair of timber. Composites Part B: Engineering 70:9–19. doi:10.1016/j.compositesb.2014.10.036.
  • Richart, F. E., A. Brandtzaeg, and R. L. Brown (1928). A study of the failure of concrete under combined compression stresses. Bulletin No. 185, Engineering Experimental Station, University of Illinois at Urbana-Champaign, Urbana.
  • Rocca, S., N. Galati, and A. Nanni. 2008. Review of design guidelines for FRP confinement of reinforced concrete columns of noncircular cross sections. Journal of Composites for Construction 12 (1):80–92. doi:10.1061/(ASCE)1090-0268(2008)12:1(80).
  • Shao, J. S., W. C. Xue, W. Q. Liu, J. Q. Jiang, and T. Jiang. 2012. Calculation of axial compressive behavior of timber column laterally strengthened with FRP. China Civil Engineering Journal 45 (8):48–54. (in Chinese).
  • Tamuzs, V., R. Tepfers, C. You, T. Rousakis, I. Repelis, V. Skruls, and U. Vilks. 2006. Behavior of concrete cylinders confined by carbon-composite tapes and prestressed yarns 1. Experimental data. Mechanics of Composite Materials 42 (1):13–32. doi:10.1007/s11029-006-0013-8.
  • Teng, J. G., L. Lam, and Y. Luo. 2009. Refinement of a design-oriented stress-strain model for FRP-confined Concrete. Journal of Composites for Construction 13 (4):269–78. doi:10.1061/(ASCE)CC.1943-5614.0000012.
  • Triantafyllou, G., T. Rousakis, and A. Karabinis. 2015. Axially loaded reinforced concrete columns with a square section partially confined by light GFRP straps. Journal of Composites for Construction 19 (1):04014035. doi:10.1061/(ASCE)CC.1943-5614.0000496.
  • Vincent, T., and T. Ozbakkaloglu. 2015. Compressive behavior of prestressed high-strength concrete-filled aramid FRP tube columns: Experimental observations. Journal of Composites for Construction 19 (6):04015003. doi:10.1061/(ASCE)CC.1943-5614.0000556.
  • Xu, Q. F. 2012. Experimental study of strengthening methods of partially-damaged circular wood columns. Journal of Central South University (Science and Technology) 43 (4):307–14. (in Chinese).
  • Xu, Q. F., and L. Zhu. 2007. An experimental study on partially-damaged wood columns repaired and strengthened with CFRP. China Civil Engineering Journal 40 (8):49–54. (in Chinese).
  • Yan, Z., C. Pantelides, and L. Reaveley. 2007. Posttensioned FRP composite shells for concrete confinement. Journal of Composites for Construction 11 (1):81–90. doi:10.1061/(ASCE)1090-0268(2007)11:1(81).
  • Zhou, C. D., S. H. A, Y. K. Qiu, and Q. L. Pan. 2019. Experimental investigation of axial compressive behavior of large-scale circular concrete columns confined by prestressed CFRP strips. Journal of Structural Engineering 145 (8):04019070. doi:10.1061/(ASCE)ST.1943-541X.0002351.
  • Zhou, Z. H., and W. Q. Liu. 2006. Experimental study on timber columns strengthened by CFRP subjected to axial compression. Earthquake Resistant Engineering and Retrofitting 28 (3):44–48. (in Chinese).
  • Zhou, C. D., X. L. Lu, H. Li, and T. Tian. 2013. Experimental study on seismic behavior of circular RC columns strengthened with pre-stressed FRP strips. Earthquake Engineering and Engineering Vibration 12 (4):123–40. (in Chinese). doi:10.1007/s11803-013-0202-0.
  • Zhou, Q., N. Yang, and W. M. Yan. 2016. Experimental study on axial compression of timber columns strengthened by CFRP-Dunjie method on decay bottoms. Journal of Building Structures 37 (S1):314–20. (in Chinese).
  • Zhu, L., and Q. F. Xu. 2008. Experimental research on behavior of CFRP-reinforced timber columns. Industrial Construction 38 (12):113–16. (in Chinese).

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