The stress field arising in the fibre pull-out test is analysed by means of the finite element method. A focus has been placed on the roles of the compliant interlayer present between fibre and matrix for stress distributions in the constituents and debond process at the interface regions. In a parametric study on a carbon fibre-epoxy matrix composite, elastic properties and thickness of the interlayer were varied, and the results compared with those for composites without interlayers. The practical implications of the findings are critically discussed
This research deals with integrating finite element modelling into the investigation of the interfac...
The conventional finite element method has been modified to allow the elastic stresses along the fib...
A single-fiber pull-out model composite for an Aramid/epoxy system was specially designed to measure...
The elastic stress transfer taking place across the fibre/matrix interface is analysed for the fibre...
The behaviour of brittle matrix reinforced-composites can be affected by the mechanical properties o...
Two current theories [11, 17] of interfacial debonding and fibre pull-out, which have been developed...
The effects of material properties and specimen geometric factors on stress transfer across the fibr...
An analytical method is established to estimate the load level when interfacial debonding occurs bet...
The load level at which a debonding occurs on the constituent fiber/matrix interface of a composite ...
The load level at which a debonding occurs on the constituent fiber/matrix interface of a composite ...
The load level at which a debonding occurs on the constituent fiber/matrix interface of a composite ...
The micromechanics of stress transfer has been analysed in a multiple-fibre composite which was subj...
An improved micromechanics model has been developed of the stress transfer for a single fibre embedd...
In this study the stress field around a single fiber in a fibrous composite is investigated as the f...
Several experimental and theoretical methods developed to evaluate the interfacial properties of fib...
This research deals with integrating finite element modelling into the investigation of the interfac...
The conventional finite element method has been modified to allow the elastic stresses along the fib...
A single-fiber pull-out model composite for an Aramid/epoxy system was specially designed to measure...
The elastic stress transfer taking place across the fibre/matrix interface is analysed for the fibre...
The behaviour of brittle matrix reinforced-composites can be affected by the mechanical properties o...
Two current theories [11, 17] of interfacial debonding and fibre pull-out, which have been developed...
The effects of material properties and specimen geometric factors on stress transfer across the fibr...
An analytical method is established to estimate the load level when interfacial debonding occurs bet...
The load level at which a debonding occurs on the constituent fiber/matrix interface of a composite ...
The load level at which a debonding occurs on the constituent fiber/matrix interface of a composite ...
The load level at which a debonding occurs on the constituent fiber/matrix interface of a composite ...
The micromechanics of stress transfer has been analysed in a multiple-fibre composite which was subj...
An improved micromechanics model has been developed of the stress transfer for a single fibre embedd...
In this study the stress field around a single fiber in a fibrous composite is investigated as the f...
Several experimental and theoretical methods developed to evaluate the interfacial properties of fib...
This research deals with integrating finite element modelling into the investigation of the interfac...
The conventional finite element method has been modified to allow the elastic stresses along the fib...
A single-fiber pull-out model composite for an Aramid/epoxy system was specially designed to measure...