Zohar Yosibash

 

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p-FE reliable simulation of the human proximal femur.

 

Patient-Specific FE-models constructed from CT-scans are validated by experimental observations. Fracture prediction is also being considered.

Generalized fracture mechanics.

 

Numerical, analytical and experimental research on generalized failure criterion in 3-D mechanical components.

     

    

 

Finite deformations and forming analyses.

Simulation of cogging, deep forming, and CIP processes by FE methods (funded projects).

Generalized edge stress intensity functions (ESIFs) in three-dimensional domains.

The elastic solution in the vicinity of a realistic 3-dimensional edge (as a crack front) is derived and ESIFs are extracted from FE solution by a quasi-dual function method (funded project).

 

 

p-FE for bio-mechanics of arteries:

Incorporating hyperelastic constitutive models, active response, blood-wall interaction.

 

Incorporating hyperelastic constitutive models (passive and active response) of human arteries in the framework of p-FEMs. Investigation of fluid-structure interactions in the framework of p-FEMs (partly funded project).

 

 

 

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