Phase field modelling of fracture and fatigue in Shape Memory Alloys

10/09/2020
by   Marlini Simoes, et al.
0

We present a new phase field framework for modelling fracture and fatigue in Shape Memory Alloys (SMAs). The constitutive model captures the superelastic behaviour of SMAs and damage is driven by the elastic and transformation strain energy densities. We consider both the assumption of a constant fracture energy and the case of a fracture energy dependent on the martensitic volume fraction. The framework is implemented in an implicit time integration scheme, with both monolithic and staggered solution strategies. The potential of this formulation is showcased by modelling a number of paradigmatic problems. First, a boundary layer model is used to examine crack tip fields and compute crack growth resistance curves (R-curves). We show that the model is able to capture the main fracture features associated with SMAs, including the toughening effect associated with stress-induced phase transformation. Insight is gained into the role of temperature, material strength, crack density function and fracture energy homogenisation. Secondly, several 2D and 3D boundary value problems are addressed, demonstrating the capabilities of the model in capturing complex cracking phenomena in SMAs, such as unstable crack growth, mixed-mode fracture or the interaction between several cracks. Finally, the model is extended to fatigue and used to capture crack nucleation and propagation in biomedical stents, a paradigmatic application of nitinol SMAs.

READ FULL TEXT

page 27

page 35

page 37

page 39

page 41

page 42

research
12/15/2021

Modelling fatigue crack growth in Shape Memory Alloys

We present a phase field-based framework for modelling fatigue damage in...
research
04/03/2023

An FFT-based crystal plasticity phase-field model for micromechanical fatigue cracking based on the stored energy density

A novel FFT-based phase-field fracture framework for modelling fatigue c...
research
07/14/2020

A phase field model for elastic-gradient-plastic solids undergoing hydrogen embrittlement

We present a gradient-based theoretical framework for predicting hydroge...
research
11/24/2020

A phase field formulation for dissolution-driven stress corrosion cracking

We present a new theoretical and numerical framework for modelling mecha...
research
08/28/2021

An anisotropic cohesive fracture model: advantages and limitations of length-scale insensitive phase-field damage models

The goal of the current work is to explore direction-dependent damage in...
research
01/14/2022

A three-field phase-field model for mixed-mode fracture in rock based on experimental determination of the mode II fracture toughness

In this contribution, a novel framework for simulating mixed-mode failur...

Please sign up or login with your details

Forgot password? Click here to reset