Discover2013 Roma - IGF XXIISimulation of fatigue debonding in adhesively bonded three-dimensional joint geometries using a cohesive zone model approach
Simulation of fatigue debonding in adhesively bonded three-dimensional joint geometries using a cohesive zone model approach

Simulation of fatigue debonding in adhesively bonded three-dimensional joint geometries using a cohesive zone model approach

Update: 2013-07-10
Share

Description

The cohesive zone model has been widely used for the description of quasi-static crack growth of interfaces and, recently, evolutions have been proposed in order to account for fatigue phenomena. In this work the cohesive zone model previously developed by the authors to simulate fatigue crack growth at interfaces in 2D geometries is extended to 3D cracks under mixed-mode I/II loading.
Comments 
In Channel
loading
00:00
00:00
x

0.5x

0.8x

1.0x

1.25x

1.5x

2.0x

3.0x

Sleep Timer

Off

End of Episode

5 Minutes

10 Minutes

15 Minutes

30 Minutes

45 Minutes

60 Minutes

120 Minutes

Simulation of fatigue debonding in adhesively bonded three-dimensional joint geometries using a cohesive zone model approach

Simulation of fatigue debonding in adhesively bonded three-dimensional joint geometries using a cohesive zone model approach

F.Moroni, A.Pirondi, G. Giuliese