[1] Rashiddadash, P., Ramezanianpour, A. A., & Mahdikhani, M. (2014). Experimental investigation on flexural toughness of hybrid fiber reinforced concrete (HFRC) containing metakaolin and pumice. Construction and Building Materials, 51, 313-320.
[2] Shah, A. A., & Ribakov, Y. (2011). Recent trends in steel fibered high-strength concrete. Materials & Design, 32(8-9), 4122-4151.
[3] Fallah, S., & Nematzadeh, M. (2017). Mechanical properties and durability of high-strength concrete containing macro-polymeric and polypropylene fibers with nano-silica and silica fume. Construction and building materials, 132, 170-187.
[4] Samarakoon, S. S. M., Ruben, P., Pedersen, J. W., & Evangelista, L. (2019). Mechanical performance of concrete made of steel fibers from tire waste. Case Studies in Construction Materials, e00259.
[5] Gupta, T., Sharma, R. K., & Chaudhary, S. (2015). Impact resistance of concrete containing waste rubber fiber and silica fume. International Journal of Impact Engineering, 83, 76-87.
[6] Toutanji, H. A. (1996). The use of rubber tire particles in concrete to replace mineral aggregates. Cement and Concrete Composites, 18(2), 135-139.
[7] Ganjian, E., Khorami, M., & Maghsoudi, A. A. (2009). Scrap-tyre-rubber replacement for aggregate and filler in concrete. Construction and Building Materials, 23(5), 1828-1836.
[8] Hertz, K. D. (2005). Concrete strength for fire safety design. Magazine of Concrete Research, 57(8), 445-453.
[9] Arioz, O. (2007). Effects of elevated temperatures on properties of concrete. Fire safety journal, 42(8), 516-522.
[10] Guo, Y. C., Zhang, J. H., Chen, G. M., & Xie, Z. H. (2014). Compressive behaviour of concrete structures incorporating recycled concrete aggregates, rubber crumb and reinforced with steel fibre, subjected to elevated temperatures. Journal of cleaner production, 72, 193-203.
[11] Mousavimehr, M., & Nematzadeh, M. (2019). Predicting post-fire behavior of crumb rubber aggregate concrete. Construction and Building Materials, 229, 116834.
[12] ACI Committee 211, Guide for Selecting Proportions for High-Strength Concrete Using Portland Cement and Other Cementitious Materials ACI 211.4R-08, American Concrete Institute, Farmington Hills (MI), 2008.
[13] ASTM C143/C143M-98, (2010). Standard Test Method for Slump of Hydraulic Cement Concrete. Annual Book of ASTM Standards.
[14] International Organization for Standardization. (2012). Fire-resistance Tests: Elements of Building Construction. Commentary on Test Method and Guide to the Application of the Outputs from the Fire-resistance Test. ISO834.
[15] ASTM C39/C39M. (2012). Standard test method for compressive strength of cylindrical concrete specimens. Annual Book of ASTM Standards.
[16] Nematzadeh, M., & Mousavimehr, M. (2019). Residual Compressive Stress–Strain Relationship for Hybrid Recycled PET–Crumb Rubber Aggregate Concrete after Exposure to Elevated Temperatures. Journal of Materials in Civil Engineering, 31(8), 04019136.
[17] Behnood, A., & Ghandehari, M. (2009). Comparison of compressive and splitting tensile strength of high-strength concrete with and without polypropylene fibers heated to high temperatures. Fire Safety Journal, 44(8), 1015-1022.
[18] Yesilata, B., Isıker, Y., & Turgut, P. (2009). Thermal insulation enhancement in concretes by adding waste PET and rubber pieces. Construction and Building Materials, 23(5), 1878-1882.
[19] ACI Committee 216. Guide for determining the fire endurance of concrete elements (ACI 216R-89). American Concrete Institute; 1989,Detroit.
[20] Eurocode 4, EN 1994-1-2:2004. Design of composite steel and concrete structures–Part 1-2: General rules for structural fire design.
[21] Nematzadeh, M., & Fallah-Valukolaee, S. (2017). Erosion resistance of high-strength concrete containing forta-ferro fibers against sulfuric acid attack with an optimum design. Construction and Building Materials , 154, 675-686.
[22] Köksal, F., Şahin, Y., Gencel, O., & Yiğit, İ. (2013). Fracture energy-based optimisation of steel fibre reinforced concretes. Engineering Fracture Mechanics, 107, 29-37.
[23] Design-Expert (R) 8 software, Stat-Ease, Inc., Minneapolis, MN, USA 2012.