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Determination of Axial Capacity for Enhanced Normal and Ultra - High Performance Concrete Columns

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[1] OZBAY, E. - GESOGLU, M. - GUNEYISI, E.: Transport Properties Based Multi-Objective Mix Proportioning Optimization of High Performance Concretes. Materials and Structures, Vol. 44, 2011, pp. 139-154.10.1617/s11527-010-9615-7 Search in Google Scholar

[2] RAMADOSS, P. - NAGAMANI, K.: Tensile Strength and Durability Characteristics of High-Performance Fiber Reinforced Concrete. The Arabian Journal for Science and Engineering, Vol. 33, No. 2B, Oct. 2008, pp. 307-319. Search in Google Scholar

[3] KOVLER, K. - BENTUR, A.: Cracking Sensitivity of Normal and High Strength Concretes. ACI Materials Journal, Vol. 106, No. 6, Nov. 2009, pp. 537-542.10.14359/51663337 Search in Google Scholar

[4] VATULIA, G. - REZUNENKO, M. - PETRENKO, D. - REZUNENKO, S.: Evaluation of the Carrying Capacity of Rectangular Steel-Concrete Columns. Civil and Environmental Engineering, Vol. 14, Iss. 1, 2018, pp. 76-83.10.2478/cee-2018-0010 Search in Google Scholar

[5] ASTM Designation C33-86, Concrete Aggregates,1988 Annual Book of ASTM, Standards American Society for Testing and Materials, Philadelphia, Pennsylvania, section 4, Vol.04-02, pp.245-252. Search in Google Scholar

[6] Sika® ViscoCrete® Hi-Tech PC20, Product Data Sheet, Turkey, pp. 1-3, www.sika.com.tr. Search in Google Scholar

[7] KADRI, H. - DUVAL, R. - AGGOUN, S. - KENAI, S.: Silica Fume Effect on Hydration Heat and Compressive Strength of High- Performance Concrete. ACI Materials Journal, Vol. 106, No. 2, April 2009, pp. 107-113.10.14359/56454 Search in Google Scholar

[8] AL-SHAMMA, Y. M.: Strength and Ductility of Confined Steel Fiber Reinforced Concrete Short Columns. MSc. Structural Engineering, Al-Mustansiriya University, Baghdad, April 2011, 113 PP. Search in Google Scholar

[9] B.S.1881, Part 116: Method for Determination of Compressive Strength of Concrete Cubes. British Standards Institution, 1989. Search in Google Scholar

[10] ASTM C496-04: Standard Test Method for Splitting Tensile of Cylindrical Concrete Specimens. Annual Book of ASTM Standards, American Society for Testing and Materials, Vol. 04-02, 2007, pp. 1-6. Search in Google Scholar