A generalised phase field model for fatigue crack growth in elastic-plastic solids with an efficient monolithic solver

10/20/2021
by   Z. Khalil, et al.
0

We present a generalised phase field-based formulation for predicting fatigue crack growth in metals. The theoretical framework aims at covering a wide range of material behaviour. Different fatigue degradation functions are considered and their influence is benchmarked against experiments. The phase field constitutive theory accommodates the so-called AT1, AT2 and phase field-cohesive zone (PF-CZM) models. In regards to material deformation, both non-linear kinematic and isotropic hardening are considered, as well as the combination of the two. Moreover, a monolithic solution scheme based on quasi-Newton algorithms is presented and shown to significantly outperform staggered approaches. The potential of the computational framework is demonstrated by investigating several 2D and 3D boundary value problems of particular interest. Constitutive and numerical choices are compared and insight is gained into their differences and similarities. The framework enables predicting fatigue crack growth in arbitrary geometries and for materials exhibiting complex (cyclic) deformation and damage responses. The finite element code developed is made freely available at www.empaneda.com/codes.

READ FULL TEXT

page 32

page 37

page 42

research
04/07/2019

Phase field modelling of crack propagation in functionally graded materials

We present a phase field formulation for fracture in functionally graded...
research
02/05/2023

Electromechanical phase-field fracture modelling of piezoresistive CNT-based composites

We present a novel computational framework to simulate the electromechan...
research
12/18/2019

Phase field fracture modelling using quasi-Newton methods and a new adaptive step scheme

We investigate the potential of quasi-Newton methods in facilitating con...
research
10/22/2019

Phase-field modeling of fatigue coupled to cyclic plasticity in an energetic formulation

This paper presents a modeling framework to describe the driving mechani...
research
04/08/2021

A unified Abaqus implementation of the phase field fracture method using only a user material subroutine

We present a simple and robust implementation of the phase field fractur...
research
08/10/2021

Numerical simulation of hydraulic fracturing: a hybrid FEM based algorithm

In this paper a problem of numerical simulation of hydraulic fractures i...
research
08/30/2021

A phase field model for hydrogen-assisted fatigue

We present a new theoretical and numerical phase field-based formulation...

Please sign up or login with your details

Forgot password? Click here to reset