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Predicting the effects of crack tip constraint on material resistance curves using ductile damage theory

Author
BURSTOW, M. C1 ; HOWARD, I. C1
[1] SIRIUS, Department of Mechanical and Process Engineering, University of Sheffield, Sir Frederick Mappin Building, Mappin Street, Sheffield S1 3JD, United Kingdom
Source

Fatigue & fracture of engineering materials & structures (Print). 1996, Vol 19, Num 4, pp 461-474 ; ref : 31 ref

CODEN
FFESEY
ISSN
8756-758X
Scientific domain
Metallurgy, welding; Polymers, paint and wood industries
Publisher
Blackwell Science, Oxford
Publication country
United Kingdom
Document type
Article
Language
English
Keyword (fr)
COD Cavité dans réseau Coalescence Extrémité fissure Intégrale J Matériau ductile Modélisation Mécanisme Méthode élément fini Propagation fissure Propriété mécanique Rupture
Keyword (en)
Crack opening displacement Void Coalescence Crack tip J integral Ductile material Modeling Mechanism Finite element method Crack propagation Mechanical properties Rupture
Keyword (es)
Cavidad en red Coalescencia Extremidad fisura Integral J Material dúctil Modelización Mecanismo Método elemento finito Propagación fisura Propiedad mecánica Ruptura
Keyword (de)
COD Gitterhohlraum Koaleszenz J Integral Finite Element Methode Rissausbreitung Bruch
Classification
Pascal
001 Exact sciences and technology / 001D Applied sciences / 001D11 Metals. Metallurgy / 001D11G Mechanical properties and methods of testing. Rheology. Fracture mechanics. Tribology / 001D11G05 Fractures

Discipline
Metals. Metallurgy
Origin
Inist-CNRS
Database
PASCAL
INIST identifier
3069578

Sauf mention contraire ci-dessus, le contenu de cette notice bibliographique peut être utilisé dans le cadre d’une licence CC BY 4.0 Inist-CNRS / Unless otherwise stated above, the content of this bibliographic record may be used under a CC BY 4.0 licence by Inist-CNRS / A menos que se haya señalado antes, el contenido de este registro bibliográfico puede ser utilizado al amparo de una licencia CC BY 4.0 Inist-CNRS

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