A theory to characterize the single-fibre-puU-out behaviour of bonded fibrous systems is presented. Based on the shear-lag mechanism and the statistical-mean microstructural elements in the systems, the theory is developed for structures in which fibers are bonded with each other at contact points, and, as a result, the fiber-bonding with the matrix (the other fibers) is effected through the discrete points instead of a continuous interface. A theory aimed at one single bond is first derived, and it is then extended to the whole fiber by adding up the contributions from all bonds on this fiber into the result so as to predict a stepwise curve of the pull-out force and the embedded fiber length. This theory can also be used, combined with ex...
Fibers crossing sliding crack planes have a positive influence on capacity because they can transfer...
AbstractAn accurate one-dimensional analytical model for simulating the pullout process of synthetic...
International audienceThe study of the interaction between multi-filament yarn and cementitious matr...
To evaluate the stress-crack opening relationship of fiber-reinforced composites, the properties of ...
The pullout test method is used to investigate the characteristics of the bond between glass strands...
The behaviour of brittle matrix reinforced-composites can be affected by the mechanical properties o...
The purpose of this investigation was to study bond in steel fiber-reinforced cementitious composite...
The paper deals with the numerical modelling of hooked steel fibres embedded in high-strength cement...
The elastic stress transfer taking place across the fibre/matrix interface is analysed for the fibre...
International audienceMicromechanical tests are reliable tools to study the failure mechanisms in co...
Two current theories [11, 17] of interfacial debonding and fibre pull-out, which have been developed...
We present a study on the local stress distribution in a composite for a single-fiber pulled-out mod...
This paper analyzes the bond behavior of natural fibers in cement-based matrix. First, it presents t...
Although the bond of a strand in a cementitious matrix is certainly predominated by the bond propert...
Due to stress concentration at the edges, fiber-fiber bonds under load are known to fail gradually i...
Fibers crossing sliding crack planes have a positive influence on capacity because they can transfer...
AbstractAn accurate one-dimensional analytical model for simulating the pullout process of synthetic...
International audienceThe study of the interaction between multi-filament yarn and cementitious matr...
To evaluate the stress-crack opening relationship of fiber-reinforced composites, the properties of ...
The pullout test method is used to investigate the characteristics of the bond between glass strands...
The behaviour of brittle matrix reinforced-composites can be affected by the mechanical properties o...
The purpose of this investigation was to study bond in steel fiber-reinforced cementitious composite...
The paper deals with the numerical modelling of hooked steel fibres embedded in high-strength cement...
The elastic stress transfer taking place across the fibre/matrix interface is analysed for the fibre...
International audienceMicromechanical tests are reliable tools to study the failure mechanisms in co...
Two current theories [11, 17] of interfacial debonding and fibre pull-out, which have been developed...
We present a study on the local stress distribution in a composite for a single-fiber pulled-out mod...
This paper analyzes the bond behavior of natural fibers in cement-based matrix. First, it presents t...
Although the bond of a strand in a cementitious matrix is certainly predominated by the bond propert...
Due to stress concentration at the edges, fiber-fiber bonds under load are known to fail gradually i...
Fibers crossing sliding crack planes have a positive influence on capacity because they can transfer...
AbstractAn accurate one-dimensional analytical model for simulating the pullout process of synthetic...
International audienceThe study of the interaction between multi-filament yarn and cementitious matr...