Extension and validation of the triangular plate method for fiber-reinforced concrete: a comparative study against the EN 14651 three-point bending test


Tutar A. I., TÜRKER H. T.

Journal of Sustainable Cement-Based Materials, 2026 (SCI-Expanded, Scopus)

  • Publication Type: Article / Article
  • Publication Date: 2026
  • Doi Number: 10.1080/21650373.2026.2692627
  • Journal Name: Journal of Sustainable Cement-Based Materials
  • Journal Indexes: Science Citation Index Expanded (SCI-EXPANDED), Scopus, Applied Science & Technology Source, Chemical Abstracts Core, Engineering Source (EBSCO)
  • Keywords: EN 14651, post-cracking behavior, steel fiber-reinforced concrete (SFRC), three-point bending test, toughness, Triangular plate method
  • Bursa Uludag University Affiliated: Yes

Abstract

Concrete has high compressive strength but limited tensile capacity and deformation, leading to brittle failure. This study extends the Triangular Plate Method (TPM), originally developed for cement-based materials, to steel fiber-reinforced concrete (SFRC) and validates it against the EN 14651:2005 + A1:2007 three-point bending (TPB) test. Plain and fiber-reinforced concretes containing hooked-end steel fibers at 0.3%, 0.6%, and 0.9% were tested using equilateral triangular plates and notched beams. Load-displacement responses were used to evaluate tensile strength, ductility, and toughness. The results show that steel fibers have a limited effect on compressive strength but markedly improve post-cracking stability, tensile performance and energy absorption, particularly at fiber contents of 0.6% and above. The strong correlation between TPM and TPB toughness values demonstrates that TPM can reliably assess SFRC under biaxial bending-type stress conditions and support practical evaluation of plate-like fiber-reinforced cementitious elements.