National Repository of Grey Literature 5 records found  Search took 0.00 seconds. 
Prediction of the Traction Separation Law of Ceramics Using Iterative Finite Element Modelling
Kozák, Vladislav ; Chlup, Zdeněk ; Padělek, P. ; Dlouhý, Ivo
Specific silicon nitride ceramics, the influence of the grain size and orientation on the bridging mechanisms was found. In ceramic matrix composites, crack-bridging mechanisms can provide substantial toughness enhancement coupled with the same and/or increased strength. The prediction of the crack propagation through interface elements based on the fracture mechanics approach and cohesive zone model is investigated. From a number of damage concepts the cohesive models seem to be especially attractive for the practical applications. Within the standard finite element package Abaqus a new finite element has been developed; it is written via the UEL (user’s element) procedure. Its shape can be modified according to the experimental data for the set of ceramics and composites. The element seems to be very stable from the numerical point a view. The shape of the traction separation law for four experimental materials is estimated via the iterative procedure based on the FEM modeling and experimentally determined displacement in indentation experiments, J-R curve is predicted and stability of the bridging law is tested.
Modelování šíření trhliny v materiálech s heterogenní mikrostrukturou
Kozák, Vladislav ; Dlouhý, Ivo
Crack growth of the brittle and ductile fracture of structural materials is predicted on the base of the cohesive zone model and its implementation to the FEM. The attention is paid on the comparison of the predicted and experimentally determined J-R curve.
Cohesive modelling of the crack propagation in the structural materials
Kozák, Vladislav
Paper studies the prediction of the crack extension of the brittle and ductile fracture of the structural materials using the cohesive elements FEM.
Principy použití kohezních modelů
Kozák, Vladislav
The micromechanical models of damage based on the cohesive zone model were tested and used for the J-R curve prediction.
Cohesice zone model application for ductile fracture
Kolář, Pavel ; Kozák, Vladislav ; Mikulec, Lukáš
The approarch based on the experimental and numerical procedure for the cohesive parameters determination for ductile fracture has been tested. Given data were used for the crack growth prediction in case of the ductile fracture.

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