Stress intensity factors for an oblique edge crack in a coating/substrate system with a graded interfacial zone under antiplane shear
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Publication:870882
DOI10.1016/j.euromechsol.2006.06.004zbMath1107.74019OpenAlexW2093953175MaRDI QIDQ870882
Publication date: 15 March 2007
Published in: European Journal of Mechanics. A. Solids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.euromechsol.2006.06.004
Related Items (10)
Analysis of anti-plane interface cracks in one-dimensional hexagonal quasicrystal coating ⋮ Anti-plane analysis of orthotropic strips with defects and imperfect FGM coating ⋮ Analysis of mode III crack perpendicular to the interface between two dissimilar strips ⋮ Oblique edge crack in an anisotropic material under antiplane shear ⋮ Thermoelastic problem of steady-state heat flows disturbed by a crack at an arbitrary angle to the graded interfacial zone in bonded materials ⋮ Mode-I crack problem for functionally graded layered structures ⋮ Impact behavior of an inclined edge crack in a layered medium with a graded nonhomogeneous interfacial zone: antiplane deformation ⋮ Crack tip shielding and anti-shielding effects of the imperfect interface in a layered piezoelectric sensor ⋮ Characterization of the behavior of different contacts with double coating ⋮ Effects of the weak/micro-discontinuity of interface on the fracture behavior of a functionally graded coating with an inclined crack
Cites Work
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- Mode I crack problem for a functionally graded orthotropic strip
- On the Mechanical Modeling of Functionally Graded Interfacial Zone With a Griffith Crack: Anti-Plane Deformation
- The Mode III Crack Problem in Bonded Materials With a Nonhomogeneous Interfacial Zone
- Transient dynamic stress intensity factors around a crack in a nonhomogeneous interfacial layer between two dissimilar elastic half-planes
- The problem for bonded half-planes containing a crack at an arbitrary angle to the graded interfacial zone
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