An accurate one-dimensional analytical model for simulating the pullout process of synthetic fibres from a cement matrix is proposed in the present study in order to shed light on the ductile behavior exhibited by Fibre Reinforced Concrete (FRC) members.The proposed model is able to predict the non linear relation between the applied tensile load and the fibre displacement and is particularly suitable for synthetic fibres that may exhibit large axial elongation and slip-hardening interface behavior. Indeed, the balance conditions between the axial load and the shear stress arising on the fibre surface in frictional contact with the matrix are imposed on the deformed configuration. The frictional bond strength is assumed to increase with sli...
A comprehensive experimental program on pullout tests of steel fibers from cement based matrices is ...
The mechanisms responsible for the improvement in tensile strain capacity of fiber reinforced densif...
The addition of metallic fibres in concrete is a widely used technique to increase its resistance to...
AbstractAn accurate one-dimensional analytical model for simulating the pullout process of synthetic...
The problem of the pullout of a viscoelastic synthetic fibre embedded in a cementitious matrix and s...
In this work an analytical model for obtaining the local bond stress-slip relationship of hooked-end...
A study of the effects of nano-silica treatment on the bonding properties of macro synthetic polypro...
This thesis is concerned with developing an effective and comprehensive method to simulate pull-out ...
By adding fibres to concrete mix the objective is to bridge discrete cracks providing for some contr...
Fibre-reinforced concrete (FRC) has been used as a structural material for many years, mainly in tun...
It is well known that fibers improve the performance of cementitious composites by acting as bridgin...
This paper presents a modeling-based relationship between fiber diameter and frictional bond strengt...
The experimental results of hooked-end steel fibers pullout tests on a self-compacting concrete med...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/43026/1/10855_2004_Article_BF00275353.p...
This paper presents a series of single fiber pull-out tests on steel and glass fiber embedded in a c...
A comprehensive experimental program on pullout tests of steel fibers from cement based matrices is ...
The mechanisms responsible for the improvement in tensile strain capacity of fiber reinforced densif...
The addition of metallic fibres in concrete is a widely used technique to increase its resistance to...
AbstractAn accurate one-dimensional analytical model for simulating the pullout process of synthetic...
The problem of the pullout of a viscoelastic synthetic fibre embedded in a cementitious matrix and s...
In this work an analytical model for obtaining the local bond stress-slip relationship of hooked-end...
A study of the effects of nano-silica treatment on the bonding properties of macro synthetic polypro...
This thesis is concerned with developing an effective and comprehensive method to simulate pull-out ...
By adding fibres to concrete mix the objective is to bridge discrete cracks providing for some contr...
Fibre-reinforced concrete (FRC) has been used as a structural material for many years, mainly in tun...
It is well known that fibers improve the performance of cementitious composites by acting as bridgin...
This paper presents a modeling-based relationship between fiber diameter and frictional bond strengt...
The experimental results of hooked-end steel fibers pullout tests on a self-compacting concrete med...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/43026/1/10855_2004_Article_BF00275353.p...
This paper presents a series of single fiber pull-out tests on steel and glass fiber embedded in a c...
A comprehensive experimental program on pullout tests of steel fibers from cement based matrices is ...
The mechanisms responsible for the improvement in tensile strain capacity of fiber reinforced densif...
The addition of metallic fibres in concrete is a widely used technique to increase its resistance to...