Finite Strain Singular Field Near the Tip of a Crack Terminating at a Material Interface
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Publication:4528133
DOI10.1177/108128659700200104zbMath1001.74568OpenAlexW2046792096MaRDI QIDQ4528133
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Publication date: 17 December 2002
Published in: Mathematics and Mechanics of Solids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1177/108128659700200104
Brittle fracture (74R10) Analytic approximation of solutions (perturbation methods, asymptotic methods, series, etc.) of equilibrium problems in solid mechanics (74G10) Stress concentrations, singularities in solid mechanics (74G70)
Related Items (5)
The anti-plane shear elasto-static fields near a crack terminating at an isotropic hyperelastic bi-material interface ⋮ Speed-dependent tip fields of a moving crack in a hyperelastic material ⋮ Investigation of large deformations of composite plane with interface crack loaded by uniform pressure ⋮ Asymptotic analysis and finite element calculation of a rubber notch contacting with a rigid wedge ⋮ On complex-variable formulation for finite plane elastostatics of harmonic materials
Cites Work
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- Large deformations near a tip of an interface-crack between two Neo- Hookean sheets
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- Finite deformations of elastic materials surrounding cylindrical holes
- On the singularity induced by certain mixed boundary conditions in linearized and nonlinear elastostatics
- The singular elastostatic field due to a crack in rubberlike materials
- Finite strains at the tip of a crack in a sheet of hyperelastic material. I: Homogeneous case. II: Special bimaterial cases. III: General bimaterial case
- Stresses in bonded materials with a crack perpendicular to the interface
- Plane strain problems for a perfectly elastic material of harmonic type
- Stability of harmonic materials in plane strain
- ON THE SINGULAR ELASTOSTATIC FIELD INDUCED BY A CRACK IN A HADAMARD MATERIAL
- The Interface Crack
- SOLUTION OF SOME FINITE PLANE-STRAIN PROBLEMS FOR COMPRESSIBLE ELASTIC SOLIDS
- On the Plane Elastostatic Problem of a Loaded Crack Terminating at a Material Interface
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