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TECHNICAL PAPER


           [41]  Bhadury, M. (2025). “Fracture behavior of steel fibre-  [51]  RILEM Technical Committee 232-TDT (2016).
               reinforced concrete tunnel segments under flexural and   “Recommendation of test methods and design of textile
               compression-splitting loads“, MS thesis, Indian Institute of   reinforced concrete“, Materials Structures, Vol. 49,
               Technology Madras, Chennai                             pp. 4923-4927, doi: 10.1617/s11527-016-0839-z.

           [42]  Gettu, R., Ramos, G., Barragán, B., Garcia T. and   [52]  Samanthula, R., Zerbino, R. L. and Gettu, R. (2023).
               Fernández, C. (2004). “Experimental study of the steel fiber   “Characterization of the uniaxial tensile response
               reinforced concrete for the segmental tunnel lining of a   of textile reinforced concrete using digital image
               subway line in barcelona”, Fib Symposium on Segmental   correlation”,1  Interdisciplinary Symposium on Smart
                                                                                 st
               Construction in Concrete, Institution of Engineers, New   and Sustainable Infrastructures,  Banthia, N.,  Solemani-
               Delhi, India. pp. 131-133                              Dashtaki, S.  and Mindess, S.,  The University of British
                                                                      Columbia, Vancouver, Canada, ISBN: 978-0-88865-491-5
           [43]  Stephen, S. J. (2019). Incorporation of Time-dependent
               Fracture Behaviour in the Structural Design of Fibre   [53]  Paul, S. and Gettu, R. (2023a). “Ec concrete for thin
               Reinforced Concrete Elements, PhD thesis, Department of   elements”, Sustainability, Vol. 15, No. 19, Article
               Civil Engineering, Indian Institute of Technology Madras,   No. 14502, https://doi.org/10.3390/su151914502, Special
               Chennai.
                                                                      Issue “Circular Economy in the Construction Sector” (ISSN
           [44]  Stephen, S. J. and Gettu, R. (2020). “Fatigue fracture of   20711050), 16 p.; also, chapter in Circular Economy in the
               fibre reinforced concrete in flexure”, Materials Structures,   Construction Sector, Guest Editors: A.C. Maury-Ramirez
               Vol. 53, Article No.  56, doi: 10.1617/s11527-020-01488-7  and N. De Belie, doi: 10.3390/books978-3-7258-3961-2,
                                                                      pp. 201-2016 (2025).
           [45]  RILEM Technical Committee TC 261-CCF (2021).
               “Recommendation: test method to determine the flexural   [54]  Paul, S. and Gettu, R. (2023b). “Influence of short glass
               creep of fibre reinforced concrete in the cracked state“,   fibers on the tensile behavior of textile-reinforced
               Materials and Structures Vol. 54, Article No. 124, pp-20 .,   concrete”, 1  Interdisciplinary Symposium on Smart and
                                                                                st
               doi: 10.1617/s11527-021-01675-0.                       Sustainable Infrastructures Banthia, N., Solemani-Dashtaki
                                                                      S., and Mindess, S., The University of British Columbia,
           [46]  Gettu, R. Zerbino, R. and Jose, S. (2017). “Factors   Vancouver, Canada, ISBN: 978-0-88865-491-5
               influencing creep of cracked fibre reinforced concrete:
               what we think we know & what we do not know”, Creep   [55]  Bažant, Z. P. (1999). “Size effect on structural strength:
               Behaviour in Cracked Sections of Fibre Reinforced      A review”, Archive of Applied Mechanics., Vol. 69,
               Concrete”, Serna, P., Llano-Torre, A., Cavalaro, S. RILEM   pp. 703-725. https://doi.org/10.1007/s004190050252
               Bookseries, Springer, Vol. 14 , pp. 3-12
                                                                  [56]  Bažant, Z. P., Jirásek, M., Barr, B. I. G., Borst, R., Burtscher,
           [47]  Barragán, B. E., Gettu, R., Martín, M. A. and Zerbino, R.   S., Carol, I., Carpinteri, A., Chiaia, B., Dempsey, J. P., Elices,
               L. (2003), “Uniaxial tension test for steel fibre reinforced   M., Ferro, G., Gettu, R., Gopalaratnam, V. S., Huet, C.,
               concrete – A parametric study”, Cement Concrete        Mihashi, H., Nemati, K. M., Planas, J., Prat, P., Rokugo,
               Composites, Vol. 25, No. 7, pp. 767-777. https://doi.  K., Saouma, V. E., Slowik, V., Ulm, F.J., Van Mier, J. G. M.,
               org/10.1016/S0958-9465(02)00096-3                      Van Vliet, M. R. A., Vítek, J. L., Willam, K. and Xi, Y. (2004).

           [48]  Gopinath, S., Gettu, R. and Iyer, N. R. (2018). “Influence   “Quasibrittle fracture scaling and size effect”, Rilem Tc
               of prestressing the textile on the tensile tehaviour of   Qfs, Materials and Structures , Vol. 37, No. 8 pp. 547-568,
               textile reinforced concrete”, Materials Structures., Vol. 51,   https://doi.org/10.1007/BF02481579.
               Article No. 64, pp-12 doi: 10.1617/s11527-018-1194-z,
                                                                  [57]  Samanthula, R., Gettu, R. and Paul, S. (2025).
           [49]  Paul, S. (2024). “Mechanical and durability characterization   “Experimental evaluation of size effect on fracture
               of textile reinforced concrete“, PhD thesis, Indian Institute   response of glass textile reinforced concrete”, Materials
               of Technology Madras, Chennai.                         and Structures, Vol. 58, Article No. 54, doi: 10.1617/s11527-
                                                                      025-02584-2
           [50]  Samanthula, R., Gettu, R. and Paul, S. (2024). “Effect of the
               end conditions on the response of glass textile reinforced   [58]  Weibull, W. (1939). “A statistical theory of the strength
               cementitious composites under uniaxial Tension”,       of materials”, Generalstabens litografiska anstalts
               Materials and Structures,Vol.  57, Article No. 140,  pp-16,   förlag, Stockholm, Sweden. https://books.google.co.in/
               doi: 10.1617/s11527-024-02413-y                        books?id=otVRAQAAIAAJ


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