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A blended shifted-fracture/phase-field framework for sharp/diffuse crack modeling

Publication ,  Journal Article
Li, K; Rodríguez-Ferran, A; Scovazzi, G
Published in: International Journal for Numerical Methods in Engineering
February 28, 2023

The shifted fracture method (SFM) is an embedded method that enables sharp crack representations while using mesh-fitted data structures. In the SFM, the true crack is embedded in the computational grid, but the crack interface conditions are approximated by, or shifted to, a surrogate crack composed of element boundaries (i.e., edges/faces in two/three dimensions). This avoids enriched degrees-of-freedom and cut elements, so that data structures and geometrical treatment are much simpler, while still maintaining mesh-independent and accurate crack approximations. This article presents a continuous-discontinuous model of fracture based on blending a phase-field (PF) model with the SFM. The PF tracks the evolution of cracks inside a numerical fracture processing zone: diffuse cracks initiate, propagate, branch, and merge according to the field equations of energy minimization; no ad-hoc criteria are needed. The PF damage variable is then used to define the geometry of the true crack. With computational efficiency in mind, the PF model is only solved in subdomains where additional crack growth is expected and the SFM representation is used elsewhere. The efficiency and accuracy of the proposed approach in capturing complex crack patterns are illustrated by a representative set of two-dimensional numerical examples.

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Published In

International Journal for Numerical Methods in Engineering

DOI

EISSN

1097-0207

ISSN

0029-5981

Publication Date

February 28, 2023

Volume

124

Issue

4

Start / End Page

998 / 1030

Related Subject Headings

  • Applied Mathematics
  • 40 Engineering
  • 09 Engineering
 

Citation

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Li, K., Rodríguez-Ferran, A., & Scovazzi, G. (2023). A blended shifted-fracture/phase-field framework for sharp/diffuse crack modeling. International Journal for Numerical Methods in Engineering, 124(4), 998–1030. https://doi.org/10.1002/nme.7152
Li, K., A. Rodríguez-Ferran, and G. Scovazzi. “A blended shifted-fracture/phase-field framework for sharp/diffuse crack modeling.” International Journal for Numerical Methods in Engineering 124, no. 4 (February 28, 2023): 998–1030. https://doi.org/10.1002/nme.7152.
Li K, Rodríguez-Ferran A, Scovazzi G. A blended shifted-fracture/phase-field framework for sharp/diffuse crack modeling. International Journal for Numerical Methods in Engineering. 2023 Feb 28;124(4):998–1030.
Li, K., et al. “A blended shifted-fracture/phase-field framework for sharp/diffuse crack modeling.” International Journal for Numerical Methods in Engineering, vol. 124, no. 4, Feb. 2023, pp. 998–1030. Scopus, doi:10.1002/nme.7152.
Li K, Rodríguez-Ferran A, Scovazzi G. A blended shifted-fracture/phase-field framework for sharp/diffuse crack modeling. International Journal for Numerical Methods in Engineering. 2023 Feb 28;124(4):998–1030.
Journal cover image

Published In

International Journal for Numerical Methods in Engineering

DOI

EISSN

1097-0207

ISSN

0029-5981

Publication Date

February 28, 2023

Volume

124

Issue

4

Start / End Page

998 / 1030

Related Subject Headings

  • Applied Mathematics
  • 40 Engineering
  • 09 Engineering