An experimental study to characterize properties controlling delamination of paperboard is presented. The normal and shear traction-separation laws are measured and evaluated using a double cantilever beam (DCB) and a split double cantilever beam (SCB) specimen. The DCB-experiments provides normal separation data in good agreement with results using alternative experimental techniques. From the measured data, both normal and shear fracture resistance data are obtained. A length parameter is introduced. The length parameter allows for the cohesive law to be obtained from a dimensionless master curve which is valid both for normal and shear loading. Taking advantage of the master curve, a mixed-mode potential is proposed. The mixed-mode poten...
The mode-I interlaminar fracture toughness of composite laminates under different loading rates can ...
This paper presents a cohesive zone model based finite element analysis of delamination resistance ...
Laminated paperboard is one of the most common packaging materials in industry. Its relatively low p...
An experimental study to characterize properties controlling delamination of paperboard is presented...
A cohesive interface model based on a master curve is proposed for the analysis of delamination in p...
A new test method for measuring the shear strength associated with mode III delamination of paperboa...
International audienceThe parameters of cohesive elements have to be chosen correctly in the simulat...
Analytical relations to describe experimentally measured traction-separation laws are often expresse...
A consistent energy-based cohesive zone model to simulate the mode I delamination behaviour of Fully...
To characterize the delamination's propagation of Ceiba and Birch plywood panels, we used the energy...
The cohesive-zone model has proven to be an effective tool to model non-linear fracture processes, s...
Identification of traction separation relations is at the forefront of damage and fracture mechanics...
The general objective of the present work is to characterize the material behavior of laminates made...
A theoretical model of the double cantilever beam tests with bending moments (DCB-UBM) is presented....
The mode-I interlaminar fracture toughness of composite laminates under different loading rates can ...
This paper presents a cohesive zone model based finite element analysis of delamination resistance ...
Laminated paperboard is one of the most common packaging materials in industry. Its relatively low p...
An experimental study to characterize properties controlling delamination of paperboard is presented...
A cohesive interface model based on a master curve is proposed for the analysis of delamination in p...
A new test method for measuring the shear strength associated with mode III delamination of paperboa...
International audienceThe parameters of cohesive elements have to be chosen correctly in the simulat...
Analytical relations to describe experimentally measured traction-separation laws are often expresse...
A consistent energy-based cohesive zone model to simulate the mode I delamination behaviour of Fully...
To characterize the delamination's propagation of Ceiba and Birch plywood panels, we used the energy...
The cohesive-zone model has proven to be an effective tool to model non-linear fracture processes, s...
Identification of traction separation relations is at the forefront of damage and fracture mechanics...
The general objective of the present work is to characterize the material behavior of laminates made...
A theoretical model of the double cantilever beam tests with bending moments (DCB-UBM) is presented....
The mode-I interlaminar fracture toughness of composite laminates under different loading rates can ...
This paper presents a cohesive zone model based finite element analysis of delamination resistance ...
Laminated paperboard is one of the most common packaging materials in industry. Its relatively low p...