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These paths are represented by pre-inserted cohesive elements.
Implementation of cohesive elements exhibited better delamination progression.
The laminate is the built using cohesive elements.
The DG formulation avoids common difficulties associated with cohesive elements.
We develop isogeometric cohesive elements for two- and three-dimensional delamination by exploiting the knot insertion algorithm directly from CAD data to generate cohesive elements along delamination.
Finite element analysis in combination with cohesive elements was used to simulate the adhesive joint tests.
The delamination between composite laminates is captured by three-dimensional bilinear cohesive elements.
The model was setup in Abaqus and cohesive elements were chosen for modelling delamination growth.
The fracture process is idealized using nonlinear fracture mechanics approach implemented through cohesive elements.
In addition, cohesive elements were inserted into the fiber-matrix interfaces to simulate debonding.
A numerical analysis using cohesive elements was also performed to validate the method.
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