Recently developed phase field models of fracture require a diffusive crack representation based on an introduction of a crack phase field. We outline a thermodynamically consistent framework for phase field models of crack propagation in elastic solids, develop incremental variational principles. In this work, the numerical implementation of the phase field model for brittle fracture using natural neighbor Galerkin method is presented. Phase field method diffuses the sharp discontinuity by introducing a regularized crack functional. The notion of regularized crack functional provides a basis for defining suitable convex dissipation functions which govern the evolution of the crack phase field. The use of natural neighbors to dynamically de...
In contrast to discrete descriptions of fracture, phase-field descriptions do not require numerical ...
Phase-field models based on the variational formulation for brittle fracture have recently been gain...
The computational modeling of the formation and growth of the pressurized and fluid filled fractures...
Phase-field models for brittle fracture consider smeared representations of cracks, which are descri...
This paper addresses the modeling of fracture in quasi-brittle materials using a phase-field approac...
A quantitative phase-field model based on the regularized formulation of Griffith\u27s theory is pre...
The phase-field modeling of quasi-brittle fracture accounting for the irreversible growth of the reg...
The numerical assessment of fracture has gained importance in fields like the safety analysis of tec...
The Material Point Method for the analysis of deformable bodies is revisited and originally upgraded...
International audienceThe phase field method has been widely adopted in brittle fracture analysis fo...
Phase-field approaches to fracture based on energy minimization principles have been rapidly gaining...
Abstract This paper aims at investigating the adoption of non-intrusive global/local approaches whil...
The phase-field method is a very effective way to simulate arbitrary crack nucleation, propagation, ...
In contrast to discrete descriptions of fracture, phase-field descriptions do not require numerical ...
Phase-field models based on the variational formulation for brittle fracture have recently been gain...
The computational modeling of the formation and growth of the pressurized and fluid filled fractures...
Phase-field models for brittle fracture consider smeared representations of cracks, which are descri...
This paper addresses the modeling of fracture in quasi-brittle materials using a phase-field approac...
A quantitative phase-field model based on the regularized formulation of Griffith\u27s theory is pre...
The phase-field modeling of quasi-brittle fracture accounting for the irreversible growth of the reg...
The numerical assessment of fracture has gained importance in fields like the safety analysis of tec...
The Material Point Method for the analysis of deformable bodies is revisited and originally upgraded...
International audienceThe phase field method has been widely adopted in brittle fracture analysis fo...
Phase-field approaches to fracture based on energy minimization principles have been rapidly gaining...
Abstract This paper aims at investigating the adoption of non-intrusive global/local approaches whil...
The phase-field method is a very effective way to simulate arbitrary crack nucleation, propagation, ...
In contrast to discrete descriptions of fracture, phase-field descriptions do not require numerical ...
Phase-field models based on the variational formulation for brittle fracture have recently been gain...
The computational modeling of the formation and growth of the pressurized and fluid filled fractures...