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The Influence of CFRP Sheets on the Strength of Specimens Produced using Normal Concrete and High-Performance Concrete Assessed using Uniaxial Compression Tests Cover

The Influence of CFRP Sheets on the Strength of Specimens Produced using Normal Concrete and High-Performance Concrete Assessed using Uniaxial Compression Tests

Open Access
|May 2020

References

  1. [1] Berthet J.F., Ferrier E., Hamelin P., Compressive behavior of concrete externally confined by composite jackets, Part A: experimental study. Construction and Building Materials, 2005.10.1016/j.conbuildmat.2004.05.012
  2. [2] Chikh N., Gahmous M., Benzaid R., Structural Performance of High Strength Concrete Columns Confined with CFRP Sheets, Proceedings of the World Congress on Engineering, 2012.
  3. [3] Daiyu Wang, Zhenyu Wang, Scott T. Smith, Tao Yu, Seismic performance of CFRP-confined circular high-strength concrete columns with high axial compression ratio, Construction and Building Materials, 2017.10.1016/j.conbuildmat.2016.12.108
  4. [4] EN 12390-13:2013 Testing hardened concrete, Part 13: Determination of secant modulus of elasticity in compression.
  5. [5] Jiang S., Fernando D., Ho J.C.M., Heitzmann M., Behavior of FRP confined ultrahighstrength concrete columns under axial compression: An experimental study, Mechanics of Structures and Materials: Advancements and Challenges, 2017.
  6. [6] Jiang T., Teng J.G., Analysis-oriented stress-strain models for FRP-confined concrete, Engineering Structures, 2007.10.1016/j.engstruct.2007.01.010
  7. [7] Lim J.C., Ozbakkaloglu T., Confinement model for FRP-confined high-strength concrete, Journal of Composites for Construction, 2013.10.1061/(ASCE)CC.1943-5614.0000376
  8. [8] Mayer P., Kaczmar J., Właściwości i zastosowania włókien węglowych i szklanych, Tworzywa Sztuczne i Chemia, 2008.
  9. [9] Ostrowski K., Kinasz R., Cieślik J., Wałach D., Ahmida B., Nośność elementów osiowo ściskanych na przykładzie kolumn z betonu i fibrobetonu wysokowartościowego wzmocnionych włóknami węglowymi, Czasopismo Inżynierii Lądowej, Środowiska i Architektury, 2016.10.7862/rb.2016.214
  10. [10] Ostrowski K., Kinasz R., Cieślik J., Wałach D., The influence of CFRP sheets on strength of short columns produced from normal strength concrete and fibre reinforced concrete, Technical Transaction, 2–B/2016.
  11. [11] Sadowski Ł., Mathia T. G., Multi-scale metrology of concrete surface morphology: fundamentals and specificity, Construction and Building Materials, 2016.10.1016/j.conbuildmat.2016.03.099
  12. [12] Sadowski Ł., Czarnecki S., Hoła J., Evaluation of the height 3D roughness parameters of concrete substrate and the adhesion to epoxy resin, International Journal of Adhesion and Adhesives, 2016.10.1016/j.ijadhadh.2015.12.019
  13. [13] Sadrmomtazi A., Khabaznia M., Tahmouresi B., Effect of Organic and Inorganic Matrix on the Behavior of FRP-Wrapped Concrete Cylinders, Journal of Rehabilitation in Civil Engineering, 2016.
  14. [14] Xiao Y., Wu H., Compressive behavior of concrete confined by various types of FRP composite jackets, Journal of Reinforced Plastic and Composites, 2003.10.1177/0731684403035430
  15. [15] www.sika.com (access: 07.04.2017).
  16. [16] www.gorazdze.pl (access: 17.03.2017).
DOI: https://doi.org/10.4467/2353737XCT.17.107.6648 | Journal eISSN: 2353-737X | Journal ISSN: 0011-4561
Language: English
Page range: 41 - 51
Published on: May 26, 2020
Published by: Cracow University of Technology
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2020 Krzysztof Ostrowski, published by Cracow University of Technology
This work is licensed under the Creative Commons Attribution-ShareAlike 4.0 License.