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Study of the mechanical properties, durability, and microstructure of an ultra-high-performance fiber-reinforced concrete containing recycled fillers Cover

Study of the mechanical properties, durability, and microstructure of an ultra-high-performance fiber-reinforced concrete containing recycled fillers

Open Access
|Nov 2024

References

  1. Different types of concrete. July 2009, Available from: https://www.planete-tp-lus.com/fr/spip.php?rubrique174. html accessed June 11, 2023
  2. Patrick, G., BFUP: Norme matériau NF P 18-470, July 2020, Available from: https://www.infociments.fr/betons/bfup-normemateriau-nf-p-18-470
  3. Abdul, G., Peiping, L., Jehangir, A., Amir, H.K., Mehran, A., Optimization of steel rebar and fibre contents in ultra-high performance concrete beam. Technical Report, 2023, 10.13140/RG.2.2.19215.05283
  4. Akeed, M.H., Shaker, Q., ‎Hemn-U, ‎A., Rabar-H, F., Samadar-S, M., Ahmed-S, M., et al., Ultra-high-performance fiber-reinforced concrete. Part V: mixture design, preparation, mixing, casting, and curing, Case Stud. Constr. Mater., 2022, 17: 1–16, 10.1016/j.cscm.2022.e01363
  5. Joaquín, A.G., Eliana, G.C., Development and research on ultra-high-performance concrete dosages in colombia: a review, ACI Mater. J., 2022, 119(3): 1–13, 10.14359/51734617
  6. Peipeng, L., Jinfeng, J., Gang, L., Zhigang, R., Physical, mechanical, thermal and sustainable properties of UHPC with converter steel slag aggregates, Case Stud. Constr. Mater., 2022, 17: 1–13, 10.1016/j.cscm.2022.e01458
  7. Saidi, M., Ait-Medjber, F., Safi, B., Samar, M., Recycling of aggregates from construction demolition wastes in concrete: study of physical and mechanical properties, Int. J. Civ. Environ. Eng., 2014, 8(12): 1307–1311
  8. Soufien, M., Short and long-term behavior of Ultra-High-Performance Concretes (UHPC) based on blast furnace slag. Civil Engineering. University of Orléans, National Engineering School of Tunis, El Amar, Tunisia, 2023
  9. Ait-Medjber, F., Saidi, M., Safi, B., Durability of different UHPFRCS, made from pozzolan as a substitute for portland cement and immersed in two aggressive environments of hydrochloric and sulfuric acids, Select. Sci. Pap. J. Civ. Eng., 2022, 17(1): 1–9, 10.2478/sspjce-2022-0005
  10. Huang, W., Kazemi-Kamyab, H., Sun, W., Scrivener, K., Effect of replacement of silica fume with calcined clay on the hydration and microstructural development of eco-UHPFRC, Mater. Des., 2017, 121: 36–46, 10.1016/j.matdes.2017.02.052
  11. Dias, L.V., Soares, S.M., Salvador Filho, J.A., Ferreira, F.G.S., Evaluation of chloride migration in ultra-high-performance concrete (UHPC) with glass powder, Revi Alc., 2021, 11(2): 61–75, 10.21041/ra.v11i2.512
  12. AFGC, Scientific and technical documents, ultra high-performance fibre-reinforced concretes. Recommendations. 2013
  13. Ait-Medjber, F., Saidi, M., Evaluation of the degree of degradation of UHPC in two aggressive media of hydrochloric and nitric acids, Algerian J. Mater. Chem., 2019, 2: 44–48
  14. Baby, F., Contribution to the identification and consideration of the tensile behaviour of UHPFRC at the structure scale. Other, Université Paris-Est, Frensh, 2012
  15. Neville, A.M., Properties of concrete -AM 149, 5th edn. Addison Wesley Longman Ltd, Essex, 1995
  16. Lionel, M., Valorisation of crystalline slag in cement concrete. Master’s thesis, University of Sherbrooke, Cancada, 2015
  17. Bouslama, S., Jelidi, A., Hydraulic concrete development using tunisian blast furnace slag, Mater. Struct., 2003, 36: 59–67
  18. S.N., Air occluded concrete, Cem. Bull., 1966, 34–35(6): 1–8, 10.5169/seals-145703
  19. Khanzadi, M., Behnood, A., Mechanical properties of high-strength concrete incorporating copper slag as coarse aggregate, Constr. Build. Mater., 2009, 23(6): 2183–2188, 10.1016/j.conbuildmat.2008.12.005
  20. Hebhoub, H., Kherraf, L., Mouats, W., Abdelouahed, A., Boughamssa, W., Effects of the 15% substitution rate of sand of ceramic waste on the properties of a hydraulic concrete, Algeria Equip., 2020, 62: 18–26
  21. Berthomier, M., Study of aluminum leaching from cementitious materials based on cem iii used in drinking water pipes: experimental and numerical approach mechanical engineering. PhD thesis, INSA of Toulouse, Frensh, 2019
  22. Chaïd, R., Bali, A., Jauberthie, R., Talah, A., Behaviour of a high-performance slag-based concrete in sulphate environment Synthesis, Sci. Tech. Rev., 2015, 24: 91–99
  23. Rihia, C., Hebhoub, H., The percentage effect of slag on the behavior of a high-performance concrete, International Conference on Materials and Energy, 23–26 April 2019; Hammamet – Tunisia., 10.1051/matecconf/202033001040
  24. Boubekeur, T., Boulekbache, B., Mechanical properties and durability of ternary cement based on limestone and granulated slag, Algeria Equip., 2015, 55: 28–33
  25. Savadogo, N., Messan, A., Hannawi, K., Tsobnang, F., Prince-Agbodjan, W., Durability of a compound cement based on tefereyre ash in niger: capillary absorption, water-accessible porosity and acid attack, J. Mat. Eng. Struct., 2015, 2: 213–223
  26. Van, L.T., Kim, D.V., Xuan, H.N., Dinh, T.V., Bulgakov, B., Bazhenova, S., Effect of aluminium powder on light-weight aerated concrete properties, XXII International Scientific Conference on Construction the Formation of Living Environment, 2019; April 18–21; Tashkent, Uzbekistan., 10.1051/e3sconf/20199702005
  27. Rabehi, M., Contribution to the characterization of the open porosity of cover concrete by the use of capillary absorption tests. PhD thesis, University Mohamed Khider Biskra, Algeria, 2014
  28. Nguyen, P., Amanjean, E., Development of high-performance fibre concrete for prefabricated structural elements. PhD Thesis, University Paul Sabatier, Toulouse 3, 2015
  29. Hassan, M., Elahi, A., Asad, M., Performance of fibre reinforced self compacting concrete against chloride attack, Eng. Proc., 2022, 22: 5, 10.3390/engproc2022022005
  30. Achoura, D., Lanos, C., Jauberthie, R., Redjel, B., Influence of partial substitution of cement by blast furnace slag on the resistance of mortars in an acidic environment, J. Phys., 2004, 118: 59–164, 10.1051/jp4:2004118019
  31. Bederina, M., Bouziani, T., Khenfer, M., Quéneudec, M., Water absorption and its effect on the durability of lightweight sand concretes by the addition of wood chavings, 2nd International Seminar Innovation & Valorization in Civil Engineering & Construction Materials., 2011 November 23–25; Rabat, Morocco, 10.1051/matecconf/20120201006
  32. Mouallif, I., Asfar, S., Latrach, A., Chergui, M., Barbe, N., Influence of sulphate aging on the mechanical strength and microstructure of concrete, 21st French Mechanical Congress., 2013 Augst 26–30; Bordeaux, Frensh
  33. Codina, M., The Chemistry of “Low Ph” binders during hydration, XXVth University Meeting of Civil Engineering, Rene Houpert Award, Frensh, 2007
DOI: https://doi.org/10.2478/msp-2024-0027 | Journal eISSN: 2083-134X (formerly 2083-124X) | Journal ISSN: 2083-1331
Language: English
Page range: 1 - 16
Submitted on: May 7, 2024
Accepted on: Aug 12, 2024
Published on: Nov 2, 2024
Published by: Wroclaw University of Science and Technology
In partnership with: Paradigm Publishing Services

© 2024 Mohamed Tahar Lekoui, Chiraz Kechkar, Houria Hebhoub, Karima Messaoudi, Hamid Alsayadi, Mohamed Ichem Benhalilou, published by Wroclaw University of Science and Technology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.