Computers and Concrete

Volume 25, Number 6, 2020, pages 509-516

DOI: 10.12989/cac.2020.25.6.509

Experimental investigating the properties of fiber reinforced concrete by combining different fibers

Ali Ghamari, Javad Kurdi, Alireza Bagher Shemirani and Hadi Haeri

Abstract

Adding fibers improves concrete performance in respect of strength and plasticity. There are numerous fibers for use in concrete that have different mechanical properties, and their combination in concrete changes its behavior. So, to investigate the behavior of the fiber reinforced concrete, an in vitro study was conducted on concrete with different fiber compositions including different ratios of steel, polypropylene and glass fibers with the volume of 1%. Two forms of fibers including singlestranded and aggregated fibers have been used for testing, and the specimens were tested for compressive strength and dividable tensile strength (splitting tensile) to determine the optimal ratio of the composition of fibers in the concrete reinforced by hybrid fibers. The results show that the concrete with a composition of steel fibers has a better performance than other compounds. In addition, by adding glass and propylene fibers to the composition of steel fibers, the strength of the samples is reduced. Also, if using the combination of fibers is required, the use of a combination of glass fibers with steel fibers will provide a better compressive strength and tensile strength than the combination of steel fibers with propylene.

Key Words

steel fibers; propylene fibers; glass fiber; compressive strength; dividable tensile strength

Address

Ali Ghamari: Department of Civil Engineering, Darreh Shahr Branch, Islamic Azad University, Darreh Shahr, Iran Javad Kurdi: Department of Structural Engineering, Vali-e-Asr University Of Rafsanjan, Rafsanjan, Iran Alireza Bagher Shemirani: Faculty of Civil, Water and Environmental Engineering, Shahid Beheshti University, Tehran, Iran Hadi Haeri: State Key Laboratory for Deep GeoMechanics and Underground Engineering, Beijing, 100083, China