A partially debonded fibre can be analyzed as a 3-D mixed Mode fracture problem for which the fibre-matrix detachment growth – leading to a progressive loss of the composite’s bearing capacity – can be assessed through classical fatigue crack propagation laws. In the present study, the above mentioned problem is firstly examined from the theoretical point of view, and the effects of the stress field in the matrix material on the SIFs (associated to the crack representing fibre-matrix detachment) are taken into account. Suitable fatigue crack propagation laws for mixed mode SIFs are employed in order to quantify the crack growth rate corresponding to the fibre-matrix debonding growth rate, while the matrix material undergoes a mechanical da...
Assuming that Paris law is applicable for individual debond crack propagation along the fiber/matrix...
Assuming that Paris law is applicable for individual debond crack propagation along the fiber/matrix...
Assuming that Paris law is applicable for individual debond crack propagation along the fiber/matrix...
A partially debonded fibre can be analyzed as a 3-D mixed Mode fracture problem for which the fibre-...
AbstractA partially debonded fibre can be analyzed as a 3-D mixed Mode fracture problem for which th...
A partially debonded fibre can be analysed as a 3-D mixed Mode fracture case, for which the fibre–ma...
A partially debonded fibre can be analysed as a 3-D mixed Mode fracture case, for which the fibre–ma...
Fatigue of composite materials is of great concern in load-carrying structures. In fact, most failur...
Composite materials are widely used in engineering applications due to their remarkable mechanical p...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
The objective of this paper is to analyze fiber/matrix debond crack growth in unidirectional (UD) c...
The aim of this paper is to analyse fibre/matrix debond crack growth during high stress cyclic tens...
Assuming that Paris law is applicable for individual debond crack propagation along the fiber/matrix...
Assuming that Paris law is applicable for individual debond crack propagation along the fiber/matrix...
Assuming that Paris law is applicable for individual debond crack propagation along the fiber/matrix...
Assuming that Paris law is applicable for individual debond crack propagation along the fiber/matrix...
A partially debonded fibre can be analyzed as a 3-D mixed Mode fracture problem for which the fibre-...
AbstractA partially debonded fibre can be analyzed as a 3-D mixed Mode fracture problem for which th...
A partially debonded fibre can be analysed as a 3-D mixed Mode fracture case, for which the fibre–ma...
A partially debonded fibre can be analysed as a 3-D mixed Mode fracture case, for which the fibre–ma...
Fatigue of composite materials is of great concern in load-carrying structures. In fact, most failur...
Composite materials are widely used in engineering applications due to their remarkable mechanical p...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
When unidirectional fiber reinforced polymer composites are loaded in tension-tension fatigue multip...
The objective of this paper is to analyze fiber/matrix debond crack growth in unidirectional (UD) c...
The aim of this paper is to analyse fibre/matrix debond crack growth during high stress cyclic tens...
Assuming that Paris law is applicable for individual debond crack propagation along the fiber/matrix...
Assuming that Paris law is applicable for individual debond crack propagation along the fiber/matrix...
Assuming that Paris law is applicable for individual debond crack propagation along the fiber/matrix...
Assuming that Paris law is applicable for individual debond crack propagation along the fiber/matrix...