In this study, a comprehensive approach has been adopted to examine in detail the effect of various hook geometries on bond-slip characteristics. Extensive single fibre pull-out tests on ultra-high performance matrix with three different W/B ratios and embedded lengths have been carried out. Test results showed that the mechanical deformation of fibre hook is the main mechanism governing the pull-out behaviour. Furthermore, the quantitative analyses have been completed to compare the hook design contribution of 3D, 4D and 5D fibres to assess overall pull-out behaviour. It was also revealed that there is a strong relationship between the magnitude of hook contribution and W/B ratio (i.e. matrix strength). Reducing the W/B ratio from 0.20 to ...
This thesis was submitted for the award of Doctor of Philosophy and was awarded by Brunel University...
This paper aims to develop a pullout force formula and increase the understanding of the damage mech...
A series of experimental pull-out tests consisting of different types of steel fibers with different...
This study is aimed at fully understanding the anchorage mechanisms of steel fibres with novel hook...
This paper presents the fibre-matrix interfacial properties of hooked end steel fibres embedded in u...
The bond relationship between the concrete matrix and steel fiber is a significant factor that affec...
Abstract This paper presents the fibre-matrix interfacial properties of hooked end steel fibres embe...
Reinforcing concrete with steel fibres has been proven being able to improve the properties of concr...
This study presents a three-dimensional non-linear finite element investigation on the pull-out beha...
The residual post-cracking tensile strength of conventional steel fibre reinforced concrete is direc...
If the beneficial effects of fibre reinforcement are to be considered in design of ultra-high perfor...
The main objective of the research described in this paper was to evaluate how the concrete compress...
The use of steel fiber is essential to secure high strength and ductility in producing ultra-high pe...
Ultra-High Performance Fiber Reinforced Concrete (UHPFRC) is a material with superior mechanical str...
It is essential to understand the single fibre pull-out response in order to understand and predict ...
This thesis was submitted for the award of Doctor of Philosophy and was awarded by Brunel University...
This paper aims to develop a pullout force formula and increase the understanding of the damage mech...
A series of experimental pull-out tests consisting of different types of steel fibers with different...
This study is aimed at fully understanding the anchorage mechanisms of steel fibres with novel hook...
This paper presents the fibre-matrix interfacial properties of hooked end steel fibres embedded in u...
The bond relationship between the concrete matrix and steel fiber is a significant factor that affec...
Abstract This paper presents the fibre-matrix interfacial properties of hooked end steel fibres embe...
Reinforcing concrete with steel fibres has been proven being able to improve the properties of concr...
This study presents a three-dimensional non-linear finite element investigation on the pull-out beha...
The residual post-cracking tensile strength of conventional steel fibre reinforced concrete is direc...
If the beneficial effects of fibre reinforcement are to be considered in design of ultra-high perfor...
The main objective of the research described in this paper was to evaluate how the concrete compress...
The use of steel fiber is essential to secure high strength and ductility in producing ultra-high pe...
Ultra-High Performance Fiber Reinforced Concrete (UHPFRC) is a material with superior mechanical str...
It is essential to understand the single fibre pull-out response in order to understand and predict ...
This thesis was submitted for the award of Doctor of Philosophy and was awarded by Brunel University...
This paper aims to develop a pullout force formula and increase the understanding of the damage mech...
A series of experimental pull-out tests consisting of different types of steel fibers with different...