Concrete Beam Reinforced by Steel Fiber (Review)
Keywords:
TELEMAC; SISYPHE; bed roughness; Shield coefficient; bed load transport formulae; Gain Size; hydromorphological modeling; sediment transport; numerical simulation; river engineering., Incubator, robust diagnosis, bond graph approach, linear fractional transformations, analytical redundancy relations, fiber content, RC beams, Flexural strength, SFRC, Steel fiber, Volume fraction.Abstract
Many literature reviews dealt with the effect of fibers on concrete performance by using different types of fibers. This study introduces some literatures related to using fibers in reinforced concrete beams for the period (2004-2021). The following section presents the previous studies of the flexural behavior of fiber reinforced concrete (FRC) beams for steel type of fiber especially. Next, the points of agreement and disagreements between studies are demonstrated briefly. Moreover, comments on previous studies are inserted. Then, a section covers the benefits of previous studies. Finally, the knowledge gap is clarified by recognizing this study’s differences.
References
P. S. Song, S. Hwang (2004) Mechanical properties of high-strength steel fiber-reinforced concrete. 18(9), 669–673. https://doi.org/10.1016/j.conbuildmat.2004.04.027
F. Altun, T. Haktanir, K. Ari (2005) Effects of steel fiber addition on mechanical properties of concrete and RC beams. 21(3), 654–661. https://doi.org/10.1016/j.conbuildmat.2005.12.006
J. Thomas, A. Ramaswamy (2007) Mechanical Properties of Steel Fiber-Reinforced Concrete. (May), 385–392.
F. Bencardino, L. Rizzuti, G. Spadea, R. N. Swamy (2008) Stress-Strain Behavior of Steel Fiber-Reinforced Concrete in Compression. 20(3), 255–263. https://doi.org/10.1061/(asce)0899-1561(2008)20:3(255)
T. Uygunoğlu (2008) Investigation of microstructure and flexural behavior of steel-fiber reinforced concrete. 41(8), 1441–1449. https://doi.org/10.1617/s11527-007-9341-y
B. W. Xu, H. S. Shi (2009) Correlations among mechanical properties of steel fiber reinforced concrete. 23(12), 3468–3474. https://doi.org/10.1016/j.conbuildmat.2009.08.017
K. Marar, Ö. Eren, I. Yitmena (2011) Compression specific toughness of normal strength steel fiber reinforced concrete (NSSFRC) and high strength steel fiber reinforced concrete (HSSFRC). 14(2), 239–247. https://doi.org/10.1590/S1516-14392011005000042
D. V. Soulioti, N. M. Barkoula, A. Paipetis, T. E. Matikas (2011) Effects of fibre geometry and volume fraction on the flexural behaviour of steel-fibre reinforced concrete. 47(SUPPL. 1), 535–541. https://doi.org/10.1111/j.1475-1305.2009.00652.x
K. Sasikala, D. S. V. Vimala (2013) A Comparative Study Of Polypropylene, Recron And Steel Fiber Reinforced Engineered Engineered Cementitious Composites. 1(10), 46–54.
V. S. Vairagade, K. S. Kene (2012) Introduction To Steel Fiber Reinforced Concrete on Engineering Performance of Concrete. 1(4), 139–141.
J. R. Deluce, F. J. Vecchio (2013) Cracking behavior of steel fiber-reinforced concrete members containing conventional reinforcement. 110(3), 481–490. https://doi.org/10.14359/51685605
L. Rizzuti, F. Bencardino (2014) Effects of fibre volume fraction on the compressive and flexural experimental behaviour of SFRC. 7(5–8), 379–390. https://doi.org/10.12988/ces.2014.4218
D. Y. Yoo, N. Banthia, J. M. Yang, Y. S. Yoon (2016) Size effect in normal- and high-strength amorphous metallic and steel fiber reinforced concrete beams. 121, 676–685. https://doi.org/10.1016/j.conbuil-dmat.2016.06.040
D. A. Sinha, A. K. Verma (2017) An Experimental Investigation on the Effect of Addition of Ternary Blend on the Mix Design Characteristics of High Strength Concrete using Steel Fibre. 225, 012163. https://doi.org/10.1088/1757-899x/225/1/012163
D. Sinha, A. Verma (2018) Investigation on the Effect of Varying Dosages of Steel Fibre on the Strength and Workability Properties Of High Strength Concrete. 1, 352–346. https://doi.org/10.29007/rjbd
W. Abbass, M. I. Khan, S. Mourad (2018) Evaluation of mechanical properties of steel fiber reinforced concrete with different strengths of concrete. 168, 556–569. https://doi.org/10.1016/j.conbuildmat.2018.02.164
I. H. Yang, C. Joh, K. C. Kim (2018) A Comparative Experimental Study on the Flexural Behavior of High-Strength Fiber-Reinforced Concrete and High-Strength Concrete Beams. 2018. https://doi.org/10.1155/2018/7390798
M. J. Avanaki, Im. Abed, A. Hoseini, M. S. Maerefat (2018) Effects of Fiber Volume Fraction and Aspect Ratio on Mechanical Properties of Hybrid Steel Fiber Reinforced Concrete. 2(2588–6886), 49–64.
S. Iqbal, I. Ali, S. Room, S. A. Khan, A. Ali (2019) Enhanced mechanical properties of fiber reinforced concrete using closed steel fibers. 52(3), 1–10. https://doi.org/10.1617/s11527-019-1357-6
M. Gumus, A. Arslan (2019) Fiber type and content vs flexural strength-Mohammed 2019.pdf.
A. Zhong, M. Sofi, E. Lumantarna, Z. Zhou, P. Mendis (2021) Flexural Capacity Prediction Model For Steel Fibre-Reinforced Concrete Beams. 15(1). https://doi.org/10.1186/s40069-021-00461-0
Downloads
Published
Issue
Section
License
Copyright (c) 2024 Authors and Global Journals Private Limited

This work is licensed under a Creative Commons Attribution 4.0 International License.
