”Research presented in this dissertation is focused on developing and validating a computational framework for study of crack propagation in polycrystalline composite ceramics capable of designing micro-architectures of phases to improve fracture toughness and damage tolerance of ZrB2-based ultra-high temperature ceramics (UHTCs). A quantitative phase-field model based on the regularized formulation of Griffith’s theory is presented for crack propagation in homogenous and heterogeneous brittle materials. This model utilizes correction parameters in the total free energy functional and mechanical equilibrium equation within the crack diffusive area to ensure that the maximum stress in front of the crack tip is equal to the stress predicted b...
International audienceIn this work, crack initiation and propagation in 2D and 3D highly heterogeneo...
Phase field theory provides a new and different method of modeling crack propagation. This method ut...
Shape memory ceramics (SMCs) are promising candidates for actuators in extreme environments such as ...
A quantitative phase-field model based on the regularized formulation of Griffith\u27s theory is pre...
The effective fracture toughness (EFT) of ZrB2-C ceramics with different engineered microarchitectur...
A phase-field model based on a modified form of the regularized formulation of Griffith\u27s fractur...
Twenty years in since their introduction, it is now plain that the regularized formulations dubbed a...
Fracture is a fundamental mechanism of materials failure. Propagating cracks can exhibit a rich dyna...
Polycrystalline materials are widely used in engineering and material science applications, e.g. aut...
A phase-field approach becomes a more popular candidate in modeling crack propagation. It uses a sca...
International audienceA new multi-phase-field method is developed for modeling the fracture of polyc...
Several recent works have demonstrated that phase-field methods for modeling fracture are capable of...
In the present work, a phase field damage model is developed to address the numerical simulation of ...
Abstract Recent advancements on the variational approach to fracture for the prediction of complex c...
The thesis presents an implementation including different applications of a variational-based approa...
International audienceIn this work, crack initiation and propagation in 2D and 3D highly heterogeneo...
Phase field theory provides a new and different method of modeling crack propagation. This method ut...
Shape memory ceramics (SMCs) are promising candidates for actuators in extreme environments such as ...
A quantitative phase-field model based on the regularized formulation of Griffith\u27s theory is pre...
The effective fracture toughness (EFT) of ZrB2-C ceramics with different engineered microarchitectur...
A phase-field model based on a modified form of the regularized formulation of Griffith\u27s fractur...
Twenty years in since their introduction, it is now plain that the regularized formulations dubbed a...
Fracture is a fundamental mechanism of materials failure. Propagating cracks can exhibit a rich dyna...
Polycrystalline materials are widely used in engineering and material science applications, e.g. aut...
A phase-field approach becomes a more popular candidate in modeling crack propagation. It uses a sca...
International audienceA new multi-phase-field method is developed for modeling the fracture of polyc...
Several recent works have demonstrated that phase-field methods for modeling fracture are capable of...
In the present work, a phase field damage model is developed to address the numerical simulation of ...
Abstract Recent advancements on the variational approach to fracture for the prediction of complex c...
The thesis presents an implementation including different applications of a variational-based approa...
International audienceIn this work, crack initiation and propagation in 2D and 3D highly heterogeneo...
Phase field theory provides a new and different method of modeling crack propagation. This method ut...
Shape memory ceramics (SMCs) are promising candidates for actuators in extreme environments such as ...