This paper presents a series of single fiber pull-out tests on steel and glass fiber embedded in a cementitious matrix. First, the phase of fiber sliding in the concrete matrix was defined using a shear lag model; then, governing equations for the sliding mechanism were derived using the analytical model. FEM analysis was then used to calibrate the frictional coefficient. Further analysis related to the pressure exerted on the fiber by the surrounding concrete revealed that a smaller fiber diameter would improve bond strength. In terms of the relationship between pressure from the surrounding concrete and the diameter of the fiber, the results showed that a smaller fiber diameter would increase the matrix pressure; improved frictional bond ...
In steel fiber reinforced composites materials, fiber and matrix are bonded together through a weak ...
Following the development of an improved theoretical analysis of fibre pull-out on the basis of the ...
A comprehensive experimental investigation was performed to understand the pullout behavior of polyp...
This paper presents a modeling-based relationship between fiber diameter and frictional bond strengt...
This paper deals with the study of bond in fiber-reinforced concrete composites and the effect of fi...
A comprehensive experimental program on pullout tests of steel fibers from cement based matrices is ...
Steel fibers can improve many of the properties of self-compacting concrete (SCC) elements including...
Few published studies have dealt with the mechanisms of reinforcement of fibre reinforced concrete (...
This research covers integrated experimental and analytical investigations of the mechanisms that in...
AbstractAn accurate one-dimensional analytical model for simulating the pullout process of synthetic...
The purpose of this investigation was to study bond in steel fiber-reinforced cementitious composite...
The use of high performance composite fibers allows for the improvement of the mechanical properties...
The experimental results of hooked-end steel fibers pullout tests on a self-compacting concrete med...
An accurate one-dimensional analytical model for simulating the pullout process of synthetic fibres ...
The mechanisms responsible for the improvement in tensile strain capacity of fiber reinforced densif...
In steel fiber reinforced composites materials, fiber and matrix are bonded together through a weak ...
Following the development of an improved theoretical analysis of fibre pull-out on the basis of the ...
A comprehensive experimental investigation was performed to understand the pullout behavior of polyp...
This paper presents a modeling-based relationship between fiber diameter and frictional bond strengt...
This paper deals with the study of bond in fiber-reinforced concrete composites and the effect of fi...
A comprehensive experimental program on pullout tests of steel fibers from cement based matrices is ...
Steel fibers can improve many of the properties of self-compacting concrete (SCC) elements including...
Few published studies have dealt with the mechanisms of reinforcement of fibre reinforced concrete (...
This research covers integrated experimental and analytical investigations of the mechanisms that in...
AbstractAn accurate one-dimensional analytical model for simulating the pullout process of synthetic...
The purpose of this investigation was to study bond in steel fiber-reinforced cementitious composite...
The use of high performance composite fibers allows for the improvement of the mechanical properties...
The experimental results of hooked-end steel fibers pullout tests on a self-compacting concrete med...
An accurate one-dimensional analytical model for simulating the pullout process of synthetic fibres ...
The mechanisms responsible for the improvement in tensile strain capacity of fiber reinforced densif...
In steel fiber reinforced composites materials, fiber and matrix are bonded together through a weak ...
Following the development of an improved theoretical analysis of fibre pull-out on the basis of the ...
A comprehensive experimental investigation was performed to understand the pullout behavior of polyp...