The simulation of dynamic crack propagation using the cohesive segments method

J.J.C. Remmers, R. Borst, de, A. Needleman

Onderzoeksoutput: Bijdrage aan tijdschriftTijdschriftartikelAcademicpeer review

171 Citaten (Scopus)
4 Downloads (Pure)


The cohesive segments method is a finite element framework that allows for the simulation of the nucleation, growth and coalescence of multiple cracks in solids. In this framework, cracks are introduced as jumps in the displacement field by employing the partition of unity property of finite element shape functions. The magnitude of these jumps are governed by cohesive constitutive relations. In this paper, the cohesive segments method is extended for the simulation of fast crack propagation in brittle solids. The performance of the method is demonstrated in several examples involving crack growth in linear elastic solids under plane stress conditions: tensile loading of a block; shear loading of a block and crack growth along and near a bi-material interface.
Originele taal-2Engels
Pagina's (van-tot)70-92
TijdschriftJournal of the Mechanics and Physics of Solids
Nummer van het tijdschrift1
StatusGepubliceerd - 2008


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