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

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17. Dez. 2024

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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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

NEVILLE, A. M.: Properties of concrete, Pearson Education, 5th ed., British Library, 2011.Search in Google Scholar

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.Search in Google Scholar

PUL, S.: Experimental investigation of tensile behaviour of high strength concrete, Indian Journal of Engineering & Materials Sciences, 15, p. 467-472, 2008.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

ACI 363R-10 (2010): Report on High-Strength Concrete, American Concrete Institute, Farmington Hills, MI, USA, 2010.Search in Google Scholar

ACI 318 (2014): Building code requirements for structural concrete and commentary, American Concrete Institute, Farmington Hills, MI, USA, 2014.Search in Google Scholar

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.Search in Google Scholar

RAPHAEL, J. M.: Tensile Strength of Concrete, ACI Journal Proceedings, 81(2), p. 158-165, 1984, https://doi.org/10.14359/10653.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

SBAROUNIS, J. A.: Multistory Flat Plate Buildings, Concrete International, 6(2), p. 70-77, 1984.Search in Google Scholar

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.Search in Google Scholar

IS 456 (2000): Code of practice for plain and reinforced concrete, Bureau of Indian Standard, New Delhi, India, 2000.Search in Google Scholar

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.Search in Google Scholar

SB CODE - 304 (2007): Structural—Concrete Structures, The Saudi Building Code Structural Technical Committee (SBCSTC), Saudi Arabia, 2007.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

EUROCODE (2002): Design of concrete structures—Part 1-1: General rules and rules for buildings, European Committee for Standardization, Brussels, Belgium, 2002.Search in Google Scholar

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).Search in Google Scholar

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.Search in Google Scholar

RAMADOSS, P.: Studies on high-performance steel fiber reinforced concrete under static and impact loads, 2007, http://hdl.handle.net/10603/31379.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

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.Search in Google Scholar

NF EN 197-1 (2000): Cement part 1: composition, specifications and conformity criteria for common cements, European Committee for Standardization, France, 2000.Search in Google Scholar

NF EN 933-1 (1997): Tests for geometrical properties of aggregates–Part 1: Determination of particle size distribution, European Committee for Standardization, France, 1997.Search in Google Scholar

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.Search in Google Scholar

NF EN 12390-5 (2001): Testing hardened concrete–Part 5: Flexural strength of test specimens, European Committee for Standardization, France, 2001.Search in Google Scholar

NF EN 12390-3 (2003): Testing hardened concrete–Part 3: Compressive strength of test specimens, European CommitteeSearch in Google Scholar

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