English

Ductile fracture modeling by phase field, Hencky strain elasticity and finite J2 plasticity using nonlocal operator method

Materials Science 2023-02-28 v1 Numerical Analysis Numerical Analysis

Abstract

A phase field model for ductile fracture considering Hencky strain and finite J2 plasticity is presented using the nonlocal operator method. A variational derivation of J2 plasticity at finite strain with a phase field model is performed. The method includes a logarithmic strain tensor and an exponential mapping in the plasticity evolution. A spectral decomposition based algorithm for computing the first and second order derivatives of the composite matrix function is implemented. A consistent tangential stiffness matrix is derived and used in Newton-Raphson iterations. Several numerical examples are performed to validate the method, including notched single-edged plates with brittle fracture or ductile fracture and necking of a bar with/without phase field model.

Keywords

Cite

@article{arxiv.2302.13783,
  title  = {Ductile fracture modeling by phase field, Hencky strain elasticity and finite J2 plasticity using nonlocal operator method},
  author = {Huilong Ren and Xiaoying Zhuang and Timon Rabczuk},
  journal= {arXiv preprint arXiv:2302.13783},
  year   = {2023}
}