This paper describes an experimental study developed to characterize the mode I and mode II fracture toughness of carbon/epoxy woven composites, using DCB and ENF tests, respectively. The laminates were manufactured using an epoxy resin and twelve woven balanced bi-directional layers of carbon fibres, all of them with the same orientation (0/90º). Significant instantaneous delaminations were observed particularly for the DCB specimen, which were responsible for an oscillatory behaviour of GI versus crack length. The maximum values obtained for GIC and GIIC were 281 and 1800 J/m2, respectively
Vulnerability to delaminations is one of the major weaknesses of advanced laminated composite struct...
n this work, the rate dependence of mode I interlaminar fracture toughness for two different materia...
La relation entre la vitesse de déformation et la résistance à la rupture interlaminaire en Mode II ...
This paper describes an experimental study developed to characterize the mode I and mode II fractur...
Accurate determination of mode III interlaminar fracture toughness is paramount in composite materia...
The Mode I and Mode II fracture behaviour of three carbon-epoxy composite laminates with different f...
Interlaminar fracture toughness is an important parameter to characterize the delamination performan...
An experimental program has been carried out at the University of Pisa, in collaboration with Leonar...
This paper reports an experimental study on the mode I interlaminar fracture of carbon/epoxy multidi...
The experimental investigation of fracture toughness under Mode I loading conditions have been perfo...
International audienceWoven composites are well-known for their good transverse properties and for t...
The interlaminar fracture behaviour of unidirectional carbon/epoxy composites has been studied under...
In the present work, the fracture resistance of a carbon fiber composite under mode I and mode II lo...
Fracture toughness of material has a great importance in the determination of the resistance of the ...
Interlaminar delamination fracture toughness of carbon/epoxy material IM7/8552 is investigated under...
Vulnerability to delaminations is one of the major weaknesses of advanced laminated composite struct...
n this work, the rate dependence of mode I interlaminar fracture toughness for two different materia...
La relation entre la vitesse de déformation et la résistance à la rupture interlaminaire en Mode II ...
This paper describes an experimental study developed to characterize the mode I and mode II fractur...
Accurate determination of mode III interlaminar fracture toughness is paramount in composite materia...
The Mode I and Mode II fracture behaviour of three carbon-epoxy composite laminates with different f...
Interlaminar fracture toughness is an important parameter to characterize the delamination performan...
An experimental program has been carried out at the University of Pisa, in collaboration with Leonar...
This paper reports an experimental study on the mode I interlaminar fracture of carbon/epoxy multidi...
The experimental investigation of fracture toughness under Mode I loading conditions have been perfo...
International audienceWoven composites are well-known for their good transverse properties and for t...
The interlaminar fracture behaviour of unidirectional carbon/epoxy composites has been studied under...
In the present work, the fracture resistance of a carbon fiber composite under mode I and mode II lo...
Fracture toughness of material has a great importance in the determination of the resistance of the ...
Interlaminar delamination fracture toughness of carbon/epoxy material IM7/8552 is investigated under...
Vulnerability to delaminations is one of the major weaknesses of advanced laminated composite struct...
n this work, the rate dependence of mode I interlaminar fracture toughness for two different materia...
La relation entre la vitesse de déformation et la résistance à la rupture interlaminaire en Mode II ...