Pages that link to "Item:Q2952882"
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The following pages link to A simulation method for high-cycle fatigue-driven delamination using a cohesive zone model (Q2952882):
Displaying 9 items.
- Point-wise evaluation of the growth driving direction for arbitrarily shaped delamination fronts using cohesive elements (Q1797680) (← links)
- An evaluation of mode-decomposed energy release rates for arbitrarily shaped delamination fronts using cohesive elements (Q1987806) (← links)
- Simulation of fatigue delamination growth in composite laminates under mode I loading (Q2293355) (← links)
- Simulation and experimental validation of mixed mode delamination in multidirectional CF/PEEK laminates under fatigue loading (Q2428348) (← links)
- On the numerical simulation of fatigue driven delamination with interface elements (Q2506560) (← links)
- Modeling fiber bridging effects on fatigue delamination propagation in composites using the interface thick level set method (Q2692903) (← links)
- Numerical simulation of fatigue-driven delamination using interface elements (Q5468847) (← links)
- High‐efficiency algorithms for simulating metal failure effects under multiaxial repeated loadings (Q6067634) (← links)
- A cohesive XFEM model for simulating fatigue crack growth under mixed-mode loading and overloading (Q6555344) (← links)