Utilize este identificador para referenciar este registo: http://hdl.handle.net/10400.22/4179
Título: Buckling strength of adhesively-bonded single and double-strap repairs on carbon-epoxy structures
Autor: Campilho, Raul
Moura, M. F. S. F. de
Ramantani, Dimitra A.
Morais, J. J. L.
Domingues, J. J. M. S.
Palavras-chave: C. Laminate
A. Carbon fibres
B. Fracture
C. Finite element analysis (FEA)
Cohesive zone model
Data: 2010
Editora: Elsevier
Relatório da Série N.º: Composites Science and Technology; Vol. 70, Issue 2
Resumo: This work reports on an experimental and finite element method (FEM) parametric study of adhesively-bonded single and double-strap repairs on carbon-epoxy structures under buckling unrestrained compression. The influence of the overlap length and patch thickness was evaluated. This loading gains a particular significance from the additional characteristic mechanisms of structures under compression, such as fibres microbuckling, for buckling restrained structures, or global buckling of the assembly, if no transverse restriction exists. The FEM analysis is based on the use of cohesive elements including mixed-mode criteria to simulate a cohesive fracture of the adhesive layer. Trapezoidal laws in pure modes I and II were used to account for the ductility of most structural adhesives. These laws were estimated for the adhesive used from double cantilever beam (DCB) and end-notched flexure (ENF) tests, respectively, using an inverse technique. The pure mode III cohesive law was equalled to the pure mode II one. Compression failure in the laminates was predicted using a stress-based criterion. The accurate FEM predictions open a good prospect for the reduction of the extensive experimentation in the design of carbon-epoxy repairs. Design principles were also established for these repairs under buckling.
Peer review: yes
URI: http://hdl.handle.net/10400.22/4179
ISSN: 0266-3538
Versão do Editor: http://www.sciencedirect.com/science/article/pii/S0266353809003960
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