A phase field model for cohesive fracture in micropolar continua

01/04/2020
by   Hyoung Suk Suh, et al.
0

While crack nucleation and propagation in the brittle or quasi-brittle regime can be predicted via variational or material-force-based phase field fracture models, these models often assume that the underlying elastic response of the material is non-polar and yet a length scale parameter must be introduced to enable the sharp cracks represented by a regularized implicit function. However, many materials with internal microstructures that contain surface tension, micro-cracks, micro-fracture, inclusion, cavity or those of particulate nature often exhibit size-dependent behaviors in both the path-independent and path-dependent regimes. This paper is intended to introduce a unified treatment that captures the size effect of the materials in both elastic and damaged states. By introducing a cohesive micropolar phase field fracture theory, along with the computational model and validation exercises, we explore the interacting size-dependent elastic deformation and fracture mechanisms exhibits in materials of complex microstructures. To achieve this goal, we introduce the distinctive degradation functions of the force-stress-strain and couple-stress-micro-rotation energy-conjugated pairs for a given regularization profile such that the macroscopic size-dependent responses of the micropolar continua is insensitive to the length scale parameter of the regularized interface. Then, we apply the variational principle to derive governing equations from the micropolar stored energy and dissipative functionals. Numerical examples are introduced to demonstrate the proper way to identify material parameters and the capacity of the new formulation to simulate complex crack patterns in the quasi-static regime.

READ FULL TEXT

page 15

page 18

page 20

page 21

page 22

research
07/12/2023

A mixed-mode dependent interface and phase-field damage model for solids with inhomogeneities

The developed computational approach is capable of initiating and propag...
research
10/07/2021

A criterion for critical junctions in elastic-plastic adhesive wear

We investigate elastic-plastic adhesive wear via a continuum variational...
research
10/01/2020

Phase-field Fracture Modelling of Thin Monolithic and Laminated Glass Plates under Quasi-static Bending

A phase-field description of brittle fracture is employed in the reporte...
research
01/08/2020

Geometric deep learning for computational mechanics Part I: Anisotropic Hyperelasticity

This paper is the first attempt to use geometric deep learning and Sobol...
research
11/12/2019

Sequential subspace optimization for recovering stored energy functions in hyperelastic materials from time-dependent data

Monitoring structures of elastic materials for defect detection by means...
research
03/16/2021

Computational Homogenization of Concrete in the Cyber Size-Resolution-Discretization (SRD) Parameter Space

Micro- and mesostructures of multiphase materials obtained from tomograp...

Please sign up or login with your details

Forgot password? Click here to reset