This research studies the displacement rate effects on the mode I delamination of unidirectional carbon/epoxy composites. Double cantilever beam test is conducted at 1, 10, 100 and 500 mm/min. Results show that the mode I fracture toughness is invariant within the range of study. Scanning electron micrographs depict that interfacial debonding dominates at 1 mm/min. However, at 500 mm/min, river pattern is observed. Besides, there is no bridging effect at all displacement rates. In addition, the experimental and numerical force-displacement curves are well compared with a maximum difference of 14%. Finally, the experimental and numerical crack growths are comparable within 15% of variation
International audienceThe influence of ply orientation on the resistance to mode I delamination of m...
International audienceIn the present work, the mode I delamination behaviour of a quasi-isotropic qu...
This study investigates the high loading rate behavior of adhesively bonded carbon/epoxy composite j...
This research studies the displacement rate effects on the mode I delamination of unidirectional car...
This paper studies the influence of displacement rate on mode II delamination of unidirectional carb...
Mixed-mode delamination is one of the common failures of composites which has not been studied under...
This paper studies the influence of displacement rate on mode II delamination of unidirectional carb...
This research aims at the high speed Mode I delamination characterisation of carbon Non Crimp Fabric...
Acrylic adhesives offer design flexibility with its viscoelasticity. However, its use with composite...
This work studies the behavior of multidirectional composite laminate under mode I & II loading. The...
The standard experimental procedures for determining the interlaminar fracture toughness are designe...
This work aims to study the behaviour against delamination under static modes I and II of adhesive b...
Accurate determination of mode III interlaminar fracture toughness is paramount in composite materia...
This research investigates dynamic delamination Mode II of carbon Non-Crimp Fabric (NCF) epoxy compo...
An experimental study was conducted on the mode I interlaminar fracture of carbon/epoxy multidirecti...
International audienceThe influence of ply orientation on the resistance to mode I delamination of m...
International audienceIn the present work, the mode I delamination behaviour of a quasi-isotropic qu...
This study investigates the high loading rate behavior of adhesively bonded carbon/epoxy composite j...
This research studies the displacement rate effects on the mode I delamination of unidirectional car...
This paper studies the influence of displacement rate on mode II delamination of unidirectional carb...
Mixed-mode delamination is one of the common failures of composites which has not been studied under...
This paper studies the influence of displacement rate on mode II delamination of unidirectional carb...
This research aims at the high speed Mode I delamination characterisation of carbon Non Crimp Fabric...
Acrylic adhesives offer design flexibility with its viscoelasticity. However, its use with composite...
This work studies the behavior of multidirectional composite laminate under mode I & II loading. The...
The standard experimental procedures for determining the interlaminar fracture toughness are designe...
This work aims to study the behaviour against delamination under static modes I and II of adhesive b...
Accurate determination of mode III interlaminar fracture toughness is paramount in composite materia...
This research investigates dynamic delamination Mode II of carbon Non-Crimp Fabric (NCF) epoxy compo...
An experimental study was conducted on the mode I interlaminar fracture of carbon/epoxy multidirecti...
International audienceThe influence of ply orientation on the resistance to mode I delamination of m...
International audienceIn the present work, the mode I delamination behaviour of a quasi-isotropic qu...
This study investigates the high loading rate behavior of adhesively bonded carbon/epoxy composite j...