Mode III stress intensity factors in an interfacial crack in dissimilar bonded materials
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering
Link
http://link.springer.com/content/pdf/10.1007/s00419-005-0436-z.pdf
Reference10 articles.
1. Bogy, D.B.: Two edge-bonded elastic wedges of different materials and wedge angles under surface tractions. Trans ASME J Appl Mech 38, 377–386 (1971)
2. Chue, C.H., Liu, T.J.: Electro-elastic analysis of a bi-material piezo-electric wedge with an interface crack under antiplane concentrated forces and in-plane surface charges. Int J Solids Struct 41, 4179–4196 (2004)
3. Dempsey, J.P., Sinclair, G.B.: On the stress singularities in the plane elasticity of the composite wedge. J Elast 9, 373–391 (1979)
4. Dempsey, J.P., Sinclair, G.B.: On the stress behaviour at the vertex of a bi-material wedge. J Elast 11, 317–327 (1981)
5. Kargarnovin, M.H., Shahani, A.R., Fariborz, S.J.: Analysis of an isotropic finite wedge under antiplane deformation. Int J Solids Struct 34, 113–128 (1997)
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