A cohesive zone finite element model for quasi-static fracture of piezoelectric polycrystals is proposed. Interface elements are used to model both inter- and transgranular fracture. Electromechanical constitutive relations are derived by enhancing commonly used mechanical traction-opening laws with relations for a parallel plate capacitor. Numerical simulations demonstrate that the proposed model correctly mimics several experimentally observed phenomena. Most importantly the switch from mainly intergranular to mainly transgranular fracture with increasing grain size is modelled correctly. The model also correctly mimics the influence of an electric field on the ultimate load
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
Are the cohesive laws of interfaces sufficient for modelling fracture in polycrys-tals using the coh...
We present a phase-field model to simulate intergranular and transgranular crack propagation in ferr...
A cohesive zone finite element model for quasi-static fracture of piezoelectric polycrystals is prop...
A cohesive zone finite element model for quasi-static fracture of piezoelectric polycrystals is prop...
A cohesive zone finite element model for quasi-static fracture of piezoelectric polycrystals is prop...
A cohesive zone finite element model for quasi-static fracture of piezoelectric polycrystals is prop...
The interplay between cohesive cracking and plasticity in polycrystals is herein investigated. A uni...
In this paper a cohesive formulation is proposed for modelling intergranular and transgranular damag...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
The interplay between cohesive cracking and plasticity in polycrystals is herein investigated. A uni...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
Are the cohesive laws of interfaces sufficient for modelling fracture in polycrys-tals using the coh...
We present a phase-field model to simulate intergranular and transgranular crack propagation in ferr...
A cohesive zone finite element model for quasi-static fracture of piezoelectric polycrystals is prop...
A cohesive zone finite element model for quasi-static fracture of piezoelectric polycrystals is prop...
A cohesive zone finite element model for quasi-static fracture of piezoelectric polycrystals is prop...
A cohesive zone finite element model for quasi-static fracture of piezoelectric polycrystals is prop...
The interplay between cohesive cracking and plasticity in polycrystals is herein investigated. A uni...
In this paper a cohesive formulation is proposed for modelling intergranular and transgranular damag...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
The interplay between cohesive cracking and plasticity in polycrystals is herein investigated. A uni...
Crack propagation in polycrystalline specimens is studied by means of a generalized finite element m...
Are the cohesive laws of interfaces sufficient for modelling fracture in polycrys-tals using the coh...
We present a phase-field model to simulate intergranular and transgranular crack propagation in ferr...