Some expressions for the strain energy in a finite volume surrounding the root of blunt V-notches
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Publication:1959913
DOI10.1007/S10704-005-3943-6zbMath1196.74198OpenAlexW2041688265MaRDI QIDQ1959913
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/s10704-005-3943-6
Related Items (12)
Elastic stress distributions for hyperbolic and parabolic notches in round shafts under torsion and uniform antiplane shear loadings ⋮ Two-dimensional fracture mechanics problems for solids with sharp and rounded V-notches ⋮ Stress field equations for U and blunt V-shaped notches in axisymmetric shafts under torsion ⋮ Local strain energy to assess the static failure of U-notches in plates under mixed mode loading ⋮ J-integral evaluation for U- and V-blunt notches under mode I loading and materials obeying a power hardening law ⋮ A Fragile Points Method, with an interface debonding model, to simulate damage and fracture of U‐notched structures ⋮ Fracture assessment of U-notches under mixed mode loading: two procedures based on the `equivalent local mode I' concept ⋮ Failure initiation at a blunt V-notch tip under mixed mode loading ⋮ Static notch sensitivity in orthotropic materials and composites ⋮ Brittle failures at rounded V-notches: a finite fracture mechanics approach ⋮ Failure criteria for linear elastic materials with U-notches ⋮ A new explicit solution for the mode I stress fields in notched orthotropic solids
Cites Work
- Notch-sensitive fracture of polycarbonate
- Failure criteria for brittle elastic materials
- A fracture criterion for blunted V-notched samples
- Fracture initiation at sharp notches: Correlation using critical stress intensities
- Developments of some explicit formulas useful to describe elastic stress fields ahead of notches in plates.
- A unified treatment of the mode I fatigue limit of components containing notches or defects
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