A study of the behavior of fibers in high-strength reinforced concrete beams is presented in this paper. Twelve reinforced concrete beams were tested under a pure torsion load. Different compressive strengths (45.2, 64.7, and 84.8 MPa) and fiber volume fractions (0, 0.25, 0.5, and 0.75) with variable spacing between transverse reinforcements have been used. It was discovered that the maximum torque of a high-strength concrete beam is increased by about 20.3, 25.6, and 27.1% when the fractional volume of fiber is increased from 0 to 0.25, 0.5 and 0.75 respectively (when the compressive strength is 45.2 MPa and the transverse reinforcement spacing is 100 mm). The test results show that the ultimate torsional strength becomes higher when the c...
The effects of steel fiber strength on the mechanical properties of steel fiber reinforced concretes...
Fibres have long been utilized in the construction sector to improve the mechanical qualities of str...
Flexural, torsional, compressive and shear behavior of Steel Fiber Reinforced Concrete (SFRC) is alr...
Abstract: These days, the most popular method for enhancing the flexural, shear and torsional proper...
AbstractThis paper concerns an investigation on six large-scale Steel Fiber Reinforced Concrete (SFR...
ABSTRACT The research was conducted to study the effect of steel fibers on the behaviour and ultimit...
Steel fiber reinforced concrete (SFRC) is the most used mechanism now a days to improve the flexural...
The paper deals with the experimental investigation of introduction of steel fibers in the normal re...
Abstract: The improvement in torsional properties of reinforced concrete (RC) is becoming extremely ...
The shear failure in a concrete beam is a brittle type of failure. The addition of steel fibers in a...
This paper concerns an experimental study on Steel Fiber Reinforced Concrete (SFRC) beams tested un...
This paper investigates experimentally and analytically the torsion behavior of steel fibered high s...
Torsional behavior and analysis of steel fiber reinforced concrete (SFRC) beams is investigated in t...
Mechanical properties of concretes substituted with steel fibres and its relative merits on the size...
In order to improve the strength of concrete structures, the fiber reinforcement of concrete has bec...
The effects of steel fiber strength on the mechanical properties of steel fiber reinforced concretes...
Fibres have long been utilized in the construction sector to improve the mechanical qualities of str...
Flexural, torsional, compressive and shear behavior of Steel Fiber Reinforced Concrete (SFRC) is alr...
Abstract: These days, the most popular method for enhancing the flexural, shear and torsional proper...
AbstractThis paper concerns an investigation on six large-scale Steel Fiber Reinforced Concrete (SFR...
ABSTRACT The research was conducted to study the effect of steel fibers on the behaviour and ultimit...
Steel fiber reinforced concrete (SFRC) is the most used mechanism now a days to improve the flexural...
The paper deals with the experimental investigation of introduction of steel fibers in the normal re...
Abstract: The improvement in torsional properties of reinforced concrete (RC) is becoming extremely ...
The shear failure in a concrete beam is a brittle type of failure. The addition of steel fibers in a...
This paper concerns an experimental study on Steel Fiber Reinforced Concrete (SFRC) beams tested un...
This paper investigates experimentally and analytically the torsion behavior of steel fibered high s...
Torsional behavior and analysis of steel fiber reinforced concrete (SFRC) beams is investigated in t...
Mechanical properties of concretes substituted with steel fibres and its relative merits on the size...
In order to improve the strength of concrete structures, the fiber reinforcement of concrete has bec...
The effects of steel fiber strength on the mechanical properties of steel fiber reinforced concretes...
Fibres have long been utilized in the construction sector to improve the mechanical qualities of str...
Flexural, torsional, compressive and shear behavior of Steel Fiber Reinforced Concrete (SFRC) is alr...