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1
A level set model for simulating fatigue-driven delamination in composites
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A level set model for simulating fatigue-driven delamination in composites

Latifi, M. ; van der Meer, F.P. ; Sluys, L.J.

International journal of fatigue, 2015-11, Vol.80, p.434-442 [Periódico revisado por pares]

Elsevier Ltd

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2
Simulation of compaction and crushing of concrete in ballistic impact with a new damage model
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Simulation of compaction and crushing of concrete in ballistic impact with a new damage model

Pereira, L.F. ; Weerheijm, J. ; Sluys, L.J.

International journal of impact engineering, 2018-01, Vol.111, p.208-221 [Periódico revisado por pares]

Oxford: Elsevier Ltd

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3
Cohesive zone and interfacial thick level set modeling of the dynamic double cantilever beam test of composite laminate
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Cohesive zone and interfacial thick level set modeling of the dynamic double cantilever beam test of composite laminate

Liu, Y. ; van der Meer, F.P. ; Sluys, L.J.

Theoretical and applied fracture mechanics, 2018-08, Vol.96, p.617-630 [Periódico revisado por pares]

Amsterdam: Elsevier Ltd

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4
A new rate-dependent stress-based nonlocal damage model to simulate dynamic tensile failure of quasi-brittle materials
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A new rate-dependent stress-based nonlocal damage model to simulate dynamic tensile failure of quasi-brittle materials

Pereira, L.F. ; Weerheijm, J. ; Sluys, L.J.

International journal of impact engineering, 2016-08, Vol.94, p.83-95 [Periódico revisado por pares]

Elsevier Ltd

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5
Modeling the R-curve effects in laminate composites using the interface thick level set method
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Modeling the R-curve effects in laminate composites using the interface thick level set method

Latifi, M. ; Kouchakzadeh, M.A.

Theoretical and applied fracture mechanics, 2020-08, Vol.108, p.102645, Article 102645 [Periódico revisado por pares]

Amsterdam: Elsevier Ltd

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6
3D mesoscale modeling and fracture property study of rubberized self-compacting concrete based on uniaxial tension test
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3D mesoscale modeling and fracture property study of rubberized self-compacting concrete based on uniaxial tension test

Li, Xing ; Chen, Xudong ; Jivkov, Andrey P. ; Zhang, Jinhua

Theoretical and applied fracture mechanics, 2019-12, Vol.104, p.102363, Article 102363 [Periódico revisado por pares]

Amsterdam: Elsevier Ltd

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7
A refined diffuse cohesive approach for the failure analysis in quasibrittle materials—part II: Application to plain and reinforced concrete structures
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A refined diffuse cohesive approach for the failure analysis in quasibrittle materials—part II: Application to plain and reinforced concrete structures

De Maio, Umberto ; Greco, Fabrizio ; Leonetti, Lorenzo ; Luciano, Raimondo ; Nevone Blasi, Paolo ; Vantadori, Sabrina

Fatigue & fracture of engineering materials & structures, 2019-12, Vol.42 (12), p.2764-2781 [Periódico revisado por pares]

Oxford: Wiley Subscription Services, Inc

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8
Predicting dynamic fracture in viscoplastic materials using Taylor-SPH
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Predicting dynamic fracture in viscoplastic materials using Taylor-SPH

Mabssout, M. ; Herreros, M.I. ; Idder, H.

International journal of impact engineering, 2016-01, Vol.87, p.95-107 [Periódico revisado por pares]

Elsevier Ltd

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9
Numerical investigation of matrix cracking propagation in cross‐ply laminated composites subjected to three‐point bending load using concurrent multiscale model
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Numerical investigation of matrix cracking propagation in cross‐ply laminated composites subjected to three‐point bending load using concurrent multiscale model

Madadi, Hamidreza ; Naghdinasab, Mohsen ; Farrokhabadi, Amin

Fatigue & fracture of engineering materials & structures, 2020-06, Vol.43 (6), p.1159-1169 [Periódico revisado por pares]

Oxford: Wiley Subscription Services, Inc

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10
Verification of a cohesive model‐based extended finite element method for ductile crack propagation
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Verification of a cohesive model‐based extended finite element method for ductile crack propagation

Li, Huan ; Li, Lei ; Fan, Jiangkun ; Yue, Zhufeng

Fatigue & fracture of engineering materials & structures, 2021-03, Vol.44 (3), p.762-775 [Periódico revisado por pares]

Oxford: Wiley Subscription Services, Inc

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