The nature of stress and electric-displacement concentrations around a strongly oblate cavity in a transversely isotropic piezoelectric material
DOI10.1007/S10704-005-1973-8zbMath1196.74061OpenAlexW1980325446MaRDI QIDQ1959899
George J. Weng, Chun-Ron Chiang
Publication date: 12 October 2010
Published in: International Journal of Fracture (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s10704-005-1973-8
permeable and impermeable conditionstransversely isotropic piezoelectric ceramicsEshelby's inclusionstress and electric- displacement concentrationsstrongly oblate cavity
Anisotropy in solid mechanics (74E10) Brittle fracture (74R10) Stress concentrations, singularities in solid mechanics (74G70) Electromagnetic effects in solid mechanics (74F15)
Related Items (5)
Cites Work
- Electrostrictive stresses near crack-like flaws
- Inclusions and inhomogeneities in transversely isotropic piezoelectric solids
- Electroelastic Green's functions for transversely isotropic piezoelectric media and their application to the solution of inclusion and inhomogeneity problems
- An intermediate crack model for flaws in piezoelectric solids.
- Fracture analysis of magnetoelectroelastic solids by using path-independent integrals
- Green's functions and the non-uniform transformation problem in a piezoelectric medium
- Crack Extension Force in a Piezoelectric Material
- Dislocations and Cracks in Anisotropic Elasticity
- Antiplane Crack Problem in Functionally Graded Piezoelectric Materials
- Fracture mechanics of piezoelectric materials
This page was built for publication: The nature of stress and electric-displacement concentrations around a strongly oblate cavity in a transversely isotropic piezoelectric material