Skip to main content
Log in

M&S highlight: Di Prisco et al. (2009), Fiber reinforced concrete: new design perspectives

  • COMMENTARY - 75 YEARS OF RILEM: MATERIALS & STRUCTURES
  • Published:
Materials and Structures Aims and scope Submit manuscript

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

References

  1. Romualdi JP, Batson GB (1963) Mechanics of crack arrest in concrete. J Eng Mech Div 89(3):147–168

    Article  Google Scholar 

  2. Barros J, Figueiras JAO (1999) “Flexural behavior of SFRC: Testing and Modeling,” ASCE J Mater Civ Eng, 11(4)

  3. Naaman AE, Reinhardt HW (2006) Proposed classification of HPFRC composites based on their tensile response. Mater Struct Constr 39(5):547–555

    Article  Google Scholar 

  4. DIN EN 14651 (2007) Test method for metallic fibre concrete—Measuring the flexural tensile strength (limit of proportionality (LOP), residual)

  5. Barr BIG et al (2003) Round-robin analysis of the RILEM TC 162-TDF beam-bending test: Part 1—Test method evaluation. Mater Struct 36(9):609–620

    Article  Google Scholar 

  6. Vandewalle L, Van Rickstal F, Heirman G, Parmentier B (2008) “On the round panel and 3-point bending tests,” In 7th International RILEM Symposium on Fibre Reinforced Concrete.

  7. Vandewalle L et al (2001) Rilem TC 162-TDF: Test and design methods for steel fibre reinforced concrete: Uni-axial tension test for steel fibre reinforced concrete. Mater Struct Constr 34(235):3–6

    Google Scholar 

  8. Naaman AE, Reinhardt HW (2007) Proposed classification of HPFRC composites based on their tensile response. Mater Struct 39(5):547–555

    Article  Google Scholar 

  9. Soranakom C, Mobasher B (2007) Closed-form solutions for flexural response of fiber-reinforced concrete beams. J Eng Mech 133(8):933–941

    Article  Google Scholar 

  10. Fib (2013) Fib Model Code for Concrete Structures 2010. Weinheim, Germany: Wiley-VCH Verlag GmbH & Co. KGaA

  11. di Prisco M, Plizzari G, Vandewalle L (2009) Fibre reinforced concrete: new design perspectives. Mater Struct 42(9):1261–1281

    Article  Google Scholar 

  12. Liao L, de la Fuente A, Cavalaro S, Aguado A (2016) Design procedure and experimental study on fibre reinforced concrete segmental rings for vertical shafts. Mater Des 92:590–601

    Article  Google Scholar 

  13. Blanco A, Pujadas P, De La Fuente A, Cavalaro S, Aguado A (2013) Application of constitutive models in European codes to RC-FRC, Constr Build Mater, 40

  14. Bakhshi M, Barsby C, Mobasher B (2012) Back-Calculation of Tensile Properties of Strain Softening and Hardening Cement Composites, in RILEM Bookseries, 2: 83–90

  15. B. Mobasher, A. Bonakdar, and M. Bakhshi, “Back-calculation procedure for cyclic flexural fracture tests in fiber reinforced concrete,” in American Concrete Institute, ACI Special Publication, 2015, vol. 2015-Janua, no. SP 300, pp. 71–92.

  16. Campione G (2008) Simplified flexural response of steel fiber-reinforced concrete beams. J Mater Civ Eng 20(4):283–293

    Article  Google Scholar 

  17. ACI Committee 544.4R (2018) ACI 544.4 R-18 -Guide to Design with Fiber-Reinforced Concrete

  18. ACI 544.8R-16 (2016) Indirect Method to Obtain Stress-Strain Response of Fiber-Reinforced Concrete (FRC)

Download references

Author information

Authors and Affiliations

Authors

Corresponding author

Correspondence to Barzin Mobasher.

Additional information

Publisher's Note

Springer Nature remains neutral with regard to jurisdictional claims in published maps and institutional affiliations.

This commentary is part of our celebration of 75 years of RILEM, highlighting Materials and Structures most highly influential and cited publications.

Highlighted paper: Di Prisco, M. Fiber reinforced concrete: new design perspectives. 2009 Materials and Structures. 42(9), pp. 1261–1281.

Affiliated paper: RILEM TC 162-TDF: Test and design methods for steel fibre reinforced concrete' σ-ε design method. Materials and Structures. 2003. 36(8), pp. 560–567.

Rights and permissions

Reprints and permissions

About this article

Check for updates. Verify currency and authenticity via CrossMark

Cite this article

Mobasher, B. M&S highlight: Di Prisco et al. (2009), Fiber reinforced concrete: new design perspectives. Mater Struct 55, 51 (2022). https://doi.org/10.1617/s11527-021-01866-9

Download citation

  • Received:

  • Accepted:

  • Published:

  • DOI: https://doi.org/10.1617/s11527-021-01866-9

Navigation