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Adhesively bonded joints under cyclic loading spectra
The possibility of extending Glinka's equivalent strain energy density (ESED) technique to composite joints under fatigue loading and to joints with variable adhesive thickness is illustrated. Furthermore, it is shown that the existing Hart-Smith design formulae, for symmetric lap joints, are contained as a subset of this extended formulation. Data from this work has the potential for enabling the degree of conservatism inherent in traditional joint design to be relaxed and for enabling a rapid assessment of the effects of manufacturing defects on the strength of a bonded joint.
Adhesively bonded joints under cyclic loading spectra
The possibility of extending Glinka's equivalent strain energy density (ESED) technique to composite joints under fatigue loading and to joints with variable adhesive thickness is illustrated. Furthermore, it is shown that the existing Hart-Smith design formulae, for symmetric lap joints, are contained as a subset of this extended formulation. Data from this work has the potential for enabling the degree of conservatism inherent in traditional joint design to be relaxed and for enabling a rapid assessment of the effects of manufacturing defects on the strength of a bonded joint.
Adhesively bonded joints under cyclic loading spectra
Jones, R. (author) / Kotousov, A. (author) / Marshall, I.H. (author)
Fatigue and Fracture of Engineering Materials and Structures ; 25 ; 173-185
2002
13 Seiten, 17 Quellen
Article (Journal)
English
Adhesively bonded joints under cyclic load spectra
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