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A comparative review of peridynamics and phase-field models for engineering fracture mechanics
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A comparative review of peridynamics and phase-field models for engineering fracture mechanics

Diehl, Patrick ; Lipton, Robert ; Wick, Thomas ; Tyagi, Mayank

Computational mechanics, 2022-06, Vol.69 (6), p.1259-1293 [Periódico revisado por pares]

Berlin/Heidelberg: Springer Berlin Heidelberg

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2
Cracking and damage from crystallization in pores: Coupled chemo-hydro-mechanics and phase-field modeling
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Cracking and damage from crystallization in pores: Coupled chemo-hydro-mechanics and phase-field modeling

Choo, Jinhyun ; Sun, WaiChing

Computer methods in applied mechanics and engineering, 2018-06, Vol.335, p.347-379 [Periódico revisado por pares]

Amsterdam: Elsevier B.V

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3
Discrete element method to simulate continuous material by using the cohesive beam model
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Discrete element method to simulate continuous material by using the cohesive beam model

André, Damien ; Iordanoff, Ivan ; Charles, Jean-luc ; Néauport, Jérôme

Computer methods in applied mechanics and engineering, 2012-03, Vol.213-216, p.113-125 [Periódico revisado por pares]

Kidlington: Elsevier B.V

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4
A simple and robust three-dimensional cracking-particle method without enrichment
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A simple and robust three-dimensional cracking-particle method without enrichment

Rabczuk, Timon ; Zi, Goangseup ; Bordas, Stephane ; Nguyen-Xuan, Hung

Computer methods in applied mechanics and engineering, 2010-08, Vol.199 (37), p.2437-2455 [Periódico revisado por pares]

Kidlington: Elsevier B.V

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5
A partitioned model order reduction approach to rationalise computational expenses in nonlinear fracture mechanics
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A partitioned model order reduction approach to rationalise computational expenses in nonlinear fracture mechanics

Kerfriden, P. ; Goury, O. ; Rabczuk, T. ; Bordas, S.P.A.

Computer methods in applied mechanics and engineering, 2013-04, Vol.256, p.169-188 [Periódico revisado por pares]

Netherlands: Elsevier B.V

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6
Phase field modeling of fracture in multi-physics problems. Part II. Coupled brittle-to-ductile failure criteria and crack propagation in thermo-elastic–plastic solids
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Phase field modeling of fracture in multi-physics problems. Part II. Coupled brittle-to-ductile failure criteria and crack propagation in thermo-elastic–plastic solids

Miehe, C. ; Hofacker, M. ; Schänzel, L.-M. ; Aldakheel, F.

Computer methods in applied mechanics and engineering, 2015-09, Vol.294, p.486-522 [Periódico revisado por pares]

Elsevier B.V

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7
Preconditioning strategies for vectorial finite element linear systems arising from phase-field models for fracture mechanics
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Preconditioning strategies for vectorial finite element linear systems arising from phase-field models for fracture mechanics

Badri, M.A. ; Rastiello, G. ; Foerster, E.

Computer methods in applied mechanics and engineering, 2021-01, Vol.373, p.113472, Article 113472 [Periódico revisado por pares]

Amsterdam: Elsevier B.V

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8
Coupled phase-field and plasticity modeling of geological materials: From brittle fracture to ductile flow
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Coupled phase-field and plasticity modeling of geological materials: From brittle fracture to ductile flow

Choo, Jinhyun ; Sun, WaiChing

Computer methods in applied mechanics and engineering, 2018-03, Vol.330 (C), p.1-32 [Periódico revisado por pares]

Amsterdam: Elsevier B.V

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9
A phase-field model of frictional shear fracture in geologic materials
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A phase-field model of frictional shear fracture in geologic materials

Fei, Fan ; Choo, Jinhyun

Computer methods in applied mechanics and engineering, 2020-09, Vol.369, p.113265, Article 113265 [Periódico revisado por pares]

Amsterdam: Elsevier B.V

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A computational library for multiscale modeling of material failure
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A computational library for multiscale modeling of material failure

Talebi, Hossein ; Silani, Mohammad ; Bordas, Stéphane P. A. ; Kerfriden, Pierre ; Rabczuk, Timon

Computational mechanics, 2014-05, Vol.53 (5), p.1047-1071 [Periódico revisado por pares]

Berlin/Heidelberg: Springer Berlin Heidelberg

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