Closed-form solutions for two anti-plane collinear cracks in a magnetoelectroelastic layer
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Publication:1012282
DOI10.1016/J.EUROMECHSOL.2008.10.004zbMath1158.74456OpenAlexW2090767587MaRDI QIDQ1012282
Jon G. Rokne, Ranjit S. Dhaliwal, Brij M. Singh
Publication date: 15 April 2009
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.2008.10.004
Brittle fracture (74R10) Electromagnetic effects in solid mechanics (74F15) Explicit solutions of equilibrium problems in solid mechanics (74G05)
Related Items (14)
Collinear unequal crack series in magnetoelectroelastic materials: Anti-plane case ⋮ A mathematical strip-saturation model for a piezoelectric plane weakened by two collinear equal cracks ⋮ Dynamic stress analysis of an elliptical cavity during elastic wave propagation in a density-inhomogeneous medium with the modulus varying as a power function ⋮ Fracture analysis of magnetoelectroelastic bimaterials with imperfect interfaces by symplectic expansion ⋮ Moving anti-plane shear crack in a piezoelectric layer bonded to dissimilar elastic infinite spaces ⋮ An electrically impermeable and magnetically permeable interface crack with a contact zone in a magnetoelectroelastic bimaterial under uniform magnetoelectromechanical loads ⋮ Dynamic fracture analysis of an annular interfacial crack between dissimilar magnetoelectroelastic layers ⋮ A penny‐shaped magnetically dielectric crack in a magnetoelectroelastic cylinder under magnetoelectromechanical loads ⋮ Closed-form solutions for two collinear dielectric cracks in a magnetoelectroelastic solid ⋮ Mathematical analysis of two unequal collinear cracks in a piezo-electro-magnetic media ⋮ Exact solution for elliptical inclusion in magnetoelectroelastic materials ⋮ Symplectic analytical solutions for the magnetoelectroelastic solids plane problem in rectangular domain ⋮ Anti-plane analysis of multiple cracks originating from a circular hole in a magnetoelectroelastic solid ⋮ A Crack Arrest Study for Piezo-Electro-Magnetic Media under Mechanical, Electric and Magnetic Small-Scale-Yielding
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