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Effect of Chipped Fiber Languor on the Bending Behavior of Concrete Beam Elements Cover

Effect of Chipped Fiber Languor on the Bending Behavior of Concrete Beam Elements

By: D. Atlaoui and  K. Ghouilem  
Open Access
|Dec 2023

References

  1. Abdallah, S. Fan, M. Rees, D. W., 2018a. Bonding mechanisms and strength of steel fiber-reinforced cementitious composites: Overview. Journal of Materials in Civil Engineering. 30(3), 04018001.
  2. Abdallah, S. Rees, D. W. Ghaffar, S. H. Fan, M., (2018b). Understanding the effects of hooked-end steel fiber geometry on the uniaxial tensile behavior of self-compacting concrete. Construction and Building Materials. 178, 484–494.
  3. Adjrad, A. Bouafia, Y. Kachi, M. Ghazi, F., 2016. Prediction of the Rupture of Circular Sections of Reinforced Concrete and Fiber Reinforced Concrete. International Journal of Concrete Structures and Materials. 10, 373–381.
  4. Atlaoui, D. Bouafia, Y., 2008. Caracterisation of the mechanical behaviour of fibers undulated in spirals resulting from waste of machining of steel parts, Second Euro Mediterranean Symposium on Advances in Geomaterials and Structures (AGS’08): Editions Sciences et Technologie. Yasmine Hammamet, Tunisie. 4: 741-746.
  5. Barragán, B. Gettu, R. Agulló, L. Zerbino, R., 2006. Shear Failure of Steel Fiber-Reinforced Concrete Based on Push-Off Test. ACI Materials Journal. 103(4): 251-257.
  6. Bouafia, Y. Kachi, M. S. Atlaoui, D. Djebali, S., 2012. Study of Mechanical Behaviour of Concrete in Direct Tensile Fiber Chips. Applied Mechanics and Materials. 46: 64-73.
  7. Cucchiara, C. Mendola, L and Papia, M., 2004. Effectiveness of stirrups and steel fibres as shear reinforcement. Cement and Concrete Composites. 26, pp: 777-786.
  8. Chalioris, C. E., 2003. Shear performance of RC beams using FRP sheets covering part of the shear span. Proceedings First International Conference on Concrete Repair. St-Malo, pp: 809-816.
  9. Chalioris, C. E. Sfiri, E. F., 2011. Shear Performance of Steel Fibrous Concrete Beams. Procedia Engineering. 14: 2064–2068.
  10. Cho, S. Kim, Y., 2003. Effects of steel fibers on short beams loaded in shear. ACI Struct J. 100(6): 765-784.
  11. Ding, Y. Zhang, F. Torgal, F. Zhang, Y., 2012. Shear behavior of steel fibre reinforced self-consolidating concrete beams Based on the modified compression field theory. Composite Structures. 94, 2440–2449.
  12. Dinh H. H, Parra-Montesios G. J, Wight J. K., 2010. Shear behaviour of steel fiber reinforced concrete beams without stirrup reinforcement. ACI Struct J. 107(5): 597–606.
  13. Ding, Y. Liu, H. Femando, T. Jalali, S., 2011. Experimental investigation on the mechanical of the fiber reinforced high-performance concrete tunnel segment. Compos Struct. 93(4): 128-144.
  14. Djebali, S. Bouafia, Y. Atlaoui, D. Bilek, A., 2011. Study of Mechanical Behaviour of Chips Reinforced Concrete. Advanced Materials Research. 24: 360-363.
  15. Djebali, S. Atlaoui, D. Bouafia, Y., 2011. Caractérisation en traction direct du béton de fibres métalliques. Matériaux & Techniques. 99: 327-338.
  16. Fariborz, M. Soleimani, S. M. Banthia, N., 2006. Shear strength of reinforced concrete beams with a fiber concrete matrix. Canadian journal of civil engineering. 33(6): 726-734.
  17. Fariborz, M. Soleimani, S. M. Banthia, N., 2006. Shear strength of reinforced concrete beams with a fiber concrete matrix. Canadian journal of civil engineering. 33(6): 726-734.
  18. Karayannis, C. G., 2000. Nonlinear analysis and tests of steel-fiber concrete beams in torsion. Structural Engineering and Mechanics. 9(4), pp. 323-338.
  19. Lim, D. H and Oh, B. H., 1999. Experimental and Theoretical investigation on the shear of steel fibre reinforced concrete beams. Engineering Structures. 21, pp. 937-944.
  20. Meda, A. Minelli, F. Plizzari, G. P. Riva, P., 2005. Shear behaviour of steel fibers reinforced concrete beams. Mater struct. 38(4): 343-512.
  21. Mirsayah, A. Banthia, N., 2002. Shear Strength of Steel Fiber-Reinforced Concrete. ACI Materials Journal. 99(5): 473-479.
  22. Noghabai, K., 2000. Beams of fibrous concrete in shear and bending experimental and Model. J Struct ENG-ASCE. 126(2): 243–510.
  23. Slater, E. Moni, M. Shahia Alam, M., 2012. Predicting the shear strength of steel fiber reinforced concrete beams. Construction and Building Materials. 8: 423-436.
  24. Sorensen, C. Berge, E. Nikolaisen, E. B., (2014). Investigation of fiber distribution in concrete batches discharged from ready-mix truck. International Journal of Concrete Structures and Materials. 8(4), 279–287.
  25. Statford, T. Burgoyne, C., 2003. Shear analysis of concrete with brittle reinforcement. J. Compos. Constr. ASCE. 7:323–330.
  26. Tadepalli, P. R. Mo, Y. Hsu, T. T., 2013. Mechanical properties of steel fibre concrete. Magazine of Concrete Research. 65(8), 462–474.
Language: English
Page range: 155 - 162
Submitted on: Jun 21, 2023
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Accepted on: Jul 10, 2023
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Published on: Dec 6, 2023
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2023 D. Atlaoui, K. Ghouilem, published by University of Oradea, Civil Engineering and Architecture Faculty
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.