Have a personal or library account? Click to login
Coarse Aggregate Grading Effect on the Correlation Between Compressive and Flexural Strengths of Concrete Cover

Coarse Aggregate Grading Effect on the Correlation Between Compressive and Flexural Strengths of Concrete

Open Access
|Dec 2024

References

  1. Bouhadra, A. – Menasria, A. – Rachedi, M.A. (2021) ‘Boundary conditions effect for buckling analysis of porous functionally graded nanobeam,’ Advances in Nano Research, 10(4), p. 313. https://doi.org/10.12989/anr.2021.10.4.313.
  2. MENASRIA, A. - ZERARI, M. - BELHADJ, M. - YAKOUBI, M. - AMARA, A.: A four-unknown refined plate theory for dynamic analysis of FG-sandwich plates under various boundary conditions, Steel and Composite Structures, 36(3), p. 355, 2020, https://doi.org/10.12989/scs.2020.36.3.355.
  3. XU, B. W. - SHI, H. S.: Correlations among mechanical properties of steel fiber reinforced concrete, Construction and Building Materials, 23(12), p. 3468-3474, 2009, https://doi.org/10.1016/j.conbuildmat.2009.08.017.
  4. MARTÍNEZ-MOLINA, W. - TORRES-ACOSTA, A. A. - JÁUREGUI, J. C. - CHÁVEZ-GARCÍA, H. L. - ALONSO-GUZMÁN, E. M. - GRAFF, M. - ARTEAGA-ARCOS, J. C.: Predicting Concrete Compressive Strength and Modulus of Rupture Using Different NDT Techniques, Advances in Materials Science and Engineering, 2014, p. 1-15, 2014, https://doi.org/10.1155/2014/742129.
  5. NEVILLE, A. M.: Properties of concrete, Pearson Education, 5th ed., British Library, 2011.
  6. ARİOĞLU, N. - GİRGIN, Z. C. - ARİOĞLU, E.: Evaluation of Ratio between Splitting Tensile Strength and Compressive Strength for Concretes up to 120 MPa and its Application in Strength Criterion, ACI Materials Journal, 103(1), p. 18-24, 2006.
  7. PUL, S.: Experimental investigation of tensile behaviour of high strength concrete, Indian Journal of Engineering & Materials Sciences, 15, p. 467-472, 2008.
  8. AHMED, M. - MALLICK, J. - ABUL HASAN, M.: A study of factors affecting the flexural tensile strength of concrete, Journal of King Saud University - Engineering Sciences, 28(2), p. 147-156, 2016, https://doi.org/10.1016/j.jksues.2014.04.001.
  9. JONES, R. - KAPLAN, M. F.: The effect of coarse aggregate on the mode of failure of concrete in compression and flexure, Magazine of Concrete Research, 9(26), p. 89-94, 1957, https://doi.org/10.1680/macr.1957.9.26.89.
  10. KNAB, L. I. - CLIFTON, J. R. - INGS, J. B.: Effects of maximum void size and aggregate characteristics on the strength of mortar, Cement and Concrete Research, 13(3), p. 383-390, 1983, https://doi.org/10.1016/0008-8846(83)90038-8.
  11. ACI 363R-10 (2010): Report on High-Strength Concrete, American Concrete Institute, Farmington Hills, MI, USA, 2010.
  12. ACI 318 (2014): Building code requirements for structural concrete and commentary, American Concrete Institute, Farmington Hills, MI, USA, 2014.
  13. LEGERON, F. - PAULTRE, P.: Prediction of Modulus of Rupture of Concrete, ACI Materials Journal, 97(2), p. 193-200, 2000, https://doi.org/10.14359/823.
  14. RAPHAEL, J. M.: Tensile Strength of Concrete, ACI Journal Proceedings, 81(2), p. 158-165, 1984, https://doi.org/10.14359/10653.
  15. JUKI, M. I. - AWANG, M. - ANNIS, M. M. K. - BOON, K. H. - OTHMAN, N. - ABDUL KADIR, A. -ROSLAN, M. A. - KHALID, F. S.: Relationship between Compressive, Splitting Tensile and Flexural Strength of Concrete Containing Granulated Waste Polyethylene Terephthalate (PET) Bottles as Fine Aggregate, Advanced Materials Research, 795, p. 356-359, 2013, https://doi.org/10.4028/www.scientific.net/AMR.795.356.
  16. CAMPOS, R. - LARRAIN, M. M. M. - ZAMAN, M. - POZADAS, V.: Relationships between compressive and flexural strengths of concrete based on fresh field properties, International Journal of Pavement Research and Technology, 14(2), p. 161-167, 2021, https://doi.org/10.1007/s42947-020-1074-0.
  17. AHMED, M. - HADI, K. M. el - HASAN, M. A. - MALLICK, J. - AHMED, A.: Evaluating the co-relationship between concrete flexural tensile strength and compressive strength, International Journal of Structural Engineering, 5(2), p. 115-131, 2014, https://doi.org/10.1504/IJSTRUCTE.2014.060902.
  18. ABDUL RAZAK, H. - WONG, H. S.: Asian Journal of Civil Engineering (Building and Housing), Asian Journal of Civil Engineering (Building and Housing), 5(1), p. 85-99, 2004.
  19. YUSUF, I. T. - JIMOH, Y. A. - SALAMI, W. A.: An appropriate relationship between flexural strength and compressive strength of palm kernel shell concrete, Alexandria Engineering Journal, 55(2), p. 1553-1562, 2016, https://doi.org/10.1016/j.aej.2016.04.008.
  20. SARKAR, S. - ADWAN, O. - MUNDAY, J. G. L.: High Strength Concrete: an Investigation of the Flexural Behaviour of High Strength RC Beams, The Structural Engineer, 75(7), 1997.
  21. AMUDHAVALLI, N. K. - POOVIZHISELVI, M.: Relationship between Compressive Strength and Flexural Strength of Polyester Fiber Reinforced Concrete, International Journal of Engineering Trends and Technology, 45(4), p. 158-160, 2017, https://doi.org/10.14445/22315381/IJETTV45P234.
  22. SBAROUNIS, J. A.: Multistory Flat Plate Buildings, Concrete International, 6(2), p. 70-77, 1984.
  23. GRAHAM, C. J. - SCANLON, A.: Deflection of reinforced concrete slabs under construction loading, Structural engineering report SER 117, 1984, https://doi.org/https://doi.org/10.7939/R3S17SW9H.
  24. IS 456 (2000): Code of practice for plain and reinforced concrete, Bureau of Indian Standard, New Delhi, India, 2000.
  25. XIAO, J.-ZH. - LI, J.-B. - ZHANG, CH.: On relationships between the mechanical properties of recycled aggregate concrete: An overview, Materials and Structures, 39(6), p. 655-664, 2006, https://doi.org/10.1617/s11527-006-9093-0.
  26. SB CODE - 304 (2007): Structural—Concrete Structures, The Saudi Building Code Structural Technical Committee (SBCSTC), Saudi Arabia, 2007.
  27. LOGAN, A. - MIRMINAR, A. - RIZKALLA, S. - ZIA, P. - WONCHANG, C.: Short-Term Mechanical Properties of High-Strength Concrete, ACI Materials Journal, 106(5), p. 413-418, 2009, https://doi.org/10.14359/51663141.
  28. KOTHAI, L. - MALATHY, R.: Strength studies on self compacting concrete with manufactured sand as partial replacement of natural sand, European Journal of Scientific Research, 89, p. 490-496, 2012.
  29. EUROCODE (2002): Design of concrete structures—Part 1-1: General rules and rules for buildings, European Committee for Standardization, Brussels, Belgium, 2002.
  30. RASHID, M. A. - MANSUR, M. A. - PARAMASIVAM, P.: Correlations between Mechanical Properties of High-Strength Concrete, Journal of Materials in Civil Engineering, 14(3), p. 230-238, 2002, https://doi.org/10.1061/(ASCE)0899-1561(2002)14:3(230).
  31. RAMADOSS, P.: Combined effect of silica fume and steel fiber on the splitting tensile strength of high-strength concrete, International Journal of Civil Engineering, 12(1), p. 96-103, 2014, http://ijce.iust.ac.ir/article-1-801-en.html.
  32. RAMADOSS, P.: Studies on high-performance steel fiber reinforced concrete under static and impact loads, 2007, http://hdl.handle.net/10603/31379.
  33. SHAH, S. P. - AHMAD, S. H.: Structural Properties of High Strength Concrete and its Implications for Precast Prestressed Concrete, PCI Journal, 30(6), p. 92-119, 1985, https://doi.org/10.15554/pcij.11011985.92.119.
  34. BHANJA, S. - SENGUPTA, B.: Influence of silica fume on the tensile strength of concrete, Cement and Concrete Research, 35(4), p. 743-747, 2005, https://doi.org/10.1016/j.cemconres.2004.05.024.
  35. PERUMAL, R.: Correlation of Compressive Strength and Other Engineering Properties of High-Performance Steel Fiber–Reinforced Concrete, Journal of Materials in Civil Engineering, 27(1), 2015, https://doi.org/10.1061/(ASCE)MT.1943-5533.0001050.
  36. MAHMOOD, W. - MOHAMMED, A. S. - ASTERIS, P. G. - KURDA, R. - ARMAGHANI, D. J.: Modeling Flexural and Compressive Strengths Behaviour of Cement-Grouted Sands Modified with Water Reducer Polymer, Applied Sciences, 12(3), p. 1016, 2022, https://doi.org/10.3390/app12031016.
  37. MARÍN-URIBE, C. R. - NAVARRO-GAETE, R.: Empirical relationships between compressive and flexural strength of concrete containing recycled asphalt material for pavement applications using different specimen configurations, Materiales de Construcción, 71(342), e249, 2021, https://doi.org/10.3989/mc.2021.11520.
  38. PRASAD, V. - SABRI, M.M.S. - DEVI, S. - NAJM, H.M. - MAJEED, S. - QAIDI, S.M.A.: Mechanical and microstructural properties of self-healing concrete based on Hay Bacillus, Magazine of Civil Engineering, 2023, Article no. 12204, DOI: 10.34910/MCE.122.4.
  39. HAMAH SOR, N. - ALI, T. K. M. - VALI, K. S. - AHMED, H. U. - FARAJ, R. H. - BHEEL, N. -MOSAVI, A.: The behavior of sustainable self-compacting concrete reinforced with low-density waste Polyethylene fiber, Materials Research Express, 9(3), p. 035501, 2022, https://doi.org/10.1088/2053-1591/ac58e8.
  40. ABOLHASANI, A. - ASLANI, F. - SAMALI, B. - GHAFFAR, S. H. - FALLAHNEJAD, H. -BANIHASHEMI, S.: Silicate impurities incorporation in calcium aluminate cement concrete: mechanical and microstructural assessment, Advances in Applied Ceramics, 120(2), p. 104-116, 2021, https://doi.org/10.1080/17436753.2021.1889755.
  41. NF EN 197-1 (2000): Cement part 1: composition, specifications and conformity criteria for common cements, European Committee for Standardization, France, 2000.
  42. NF EN 933-1 (1997): Tests for geometrical properties of aggregates–Part 1: Determination of particle size distribution, European Committee for Standardization, France, 1997.
  43. NF EN 1097-6 (2001): Tests for mechanical and physical properties of aggregates–Part 6: Determination of particle density and water absorption, European Committee for Standardization, France, 2001.
  44. NF EN 12390-5 (2001): Testing hardened concrete–Part 5: Flexural strength of test specimens, European Committee for Standardization, France, 2001.
  45. NF EN 12390-3 (2003): Testing hardened concrete–Part 3: Compressive strength of test specimens, European Committee
DOI: https://doi.org/10.2478/cee-2024-0089 | Journal eISSN: 2199-6512 | Journal ISSN: 1336-5835
Language: English
Page range: 1221 - 1245
Published on: Dec 17, 2024
Published by: University of Žilina
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2024 Ahmed Boufedah Badissi, A. Beroual, M. Bentalha, published by University of Žilina
This work is licensed under the Creative Commons Attribution 4.0 License.