In this paper, the fiber energy in composite materials, subject to an external constant load, is studied. The investigation is done in the framework of fiber bundle model with randomly oriented fibers. The charge transfer is done only between neighboring close fibers according to the local load sharing. During the breaking process, the fibers expand, increasing their elastic energy, but when the fiber breaks, it loses its link with its neighboring fibers reducing the cohesive energy of the materials. The results show that the material energy presents one maximal peak at cross over time which decreases linearly with the applied force and scales with the lifetime of the material. However, the temperature does not have a remarkable effect on t...
We study the damage enhanced creep rupture of disordered materials by means of a fiber bundle model....
AbstractThe phenomenon of the load diffusion from a fibre to a surrounding matrix is analysed for th...
In brittle composite materials, failure mechanisms like debonding of the matrix-fiber interface or f...
The fiber bundle model describes a collection of elastic fibers under load. The fibers fail successi...
We consider the Equal-Load-Sharing Fiber Bundle Model as a model for composite materials under stres...
A fiber bundle model in (1 + 1)-dimensions for the breaking of fibrous composite matrix is introduce...
Our aim is to investigate the crack diffusion created at single region of composite materials by usi...
It has recently been reported that the equal load sharing fiber bundle model predicts the rate of ch...
Statistical models are essential to get a better understanding of the role of disorder in brittle di...
Damage growth in composite materials is a complex process which is of interest in many fields of sci...
The stress redistribution after a single fibre break is a fundamental issue in longitudinal strength...
The use of reinforcing fibres in structural materials has been known since ancient time as an effect...
We present fiber bundle models of creep rupture of fiber composites considering two different micros...
A key aspect of the longitudinal tensile failure of composites is the stress redistribution that occ...
We introduce a continuous damage fiber bundle model and compare its behavior with that of dry fiber ...
We study the damage enhanced creep rupture of disordered materials by means of a fiber bundle model....
AbstractThe phenomenon of the load diffusion from a fibre to a surrounding matrix is analysed for th...
In brittle composite materials, failure mechanisms like debonding of the matrix-fiber interface or f...
The fiber bundle model describes a collection of elastic fibers under load. The fibers fail successi...
We consider the Equal-Load-Sharing Fiber Bundle Model as a model for composite materials under stres...
A fiber bundle model in (1 + 1)-dimensions for the breaking of fibrous composite matrix is introduce...
Our aim is to investigate the crack diffusion created at single region of composite materials by usi...
It has recently been reported that the equal load sharing fiber bundle model predicts the rate of ch...
Statistical models are essential to get a better understanding of the role of disorder in brittle di...
Damage growth in composite materials is a complex process which is of interest in many fields of sci...
The stress redistribution after a single fibre break is a fundamental issue in longitudinal strength...
The use of reinforcing fibres in structural materials has been known since ancient time as an effect...
We present fiber bundle models of creep rupture of fiber composites considering two different micros...
A key aspect of the longitudinal tensile failure of composites is the stress redistribution that occ...
We introduce a continuous damage fiber bundle model and compare its behavior with that of dry fiber ...
We study the damage enhanced creep rupture of disordered materials by means of a fiber bundle model....
AbstractThe phenomenon of the load diffusion from a fibre to a surrounding matrix is analysed for th...
In brittle composite materials, failure mechanisms like debonding of the matrix-fiber interface or f...