Dynamic analysis of a penny-shaped dielectric crack in a magnetoelectroelastic solid under impacts
DOI10.1016/j.euromechsol.2009.10.002zbMath1478.74075OpenAlexW2033144571MaRDI QIDQ2034276
Publication date: 21 June 2021
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.2009.10.002
Laplace transformHankel transformdynamic intensity factorsemi-permeable conditiontransient crack opening displacement
Singularities, blow-up, stress concentrations for dynamical problems in solid mechanics (74H35) Brittle fracture (74R10) Electromagnetic effects in solid mechanics (74F15) Numerical approximation of solutions of dynamical problems in solid mechanics (74H15) Impact in solid mechanics (74M20)
Related Items (7)
Cites Work
- Unnamed Item
- Fracture analysis of a magnetoelectroelastic solid with a penny-shaped crack by considering the effects of the opening crack interior
- Dynamic fracture analysis of a penny-shaped crack in a magnetoelectroelastic layer
- Moving antiplane shear crack in transversely isotropic magnetoelectroelastic media
- Transient response of a magnetoelectroelastic solid with two collinear dielectric cracks under impacts
- Magnetoelectroelastic analysis for an opening crack in a piezoelectromagnetic solid
- On the crack face boundary conditions in electromechanical fracture and an experimental protocol for determining energy release rates
- On the fracture mechanics of piezoelectric solids
- The dynamic behavior of two collinear interface cracks in magneto-electro-elastic materials
- Fracture analysis of cracked piezoelectric materials
- Applicability of the crack-face electromagnetic boundary conditions for fracture of magnetoelectroelastic materials
- Transient response of a cracked magnetoelectroelastic strip under anti-plane impact
- Dynamic analysis of a cracked magnetoelectroelastic medium under antiplane mechanical and inplane electric and magnetic impacts
- Constant moving crack in a magnetoelectroelastic material under anti-plane shear loading
- Moving crack at the interface between two dissimilar magnetoelectroelastic materials
- Energetically consistent boundary conditions for electromechanical fracture
- Effects of electric field on crack growth for a penny-shaped dielectric crack in a piezoelectric layer
- Crack Extension Force in a Piezoelectric Material
This page was built for publication: Dynamic analysis of a penny-shaped dielectric crack in a magnetoelectroelastic solid under impacts