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Triangular quarter‐point elements as elastic and perfectly‐plastic crack tip elements

Roshdy S. Barsoum

Abstract

Abstract Triangular and prismatic quadratic isoparametric elements, formed by collapsing one side and placing the mid‐side node near the crack tip at the quarter point, are shown to embody the (1/√ r ) singularity of elastic fracture mechanics and the (1/ r ) singularity of perfect plasticity. The procedure of performing the fracture analysis for the case of small scale yielding is discussed, and the finite element results are compared with theoretical results. The proposed elements have wide application in the fracture analysis of structures where ductile fracture is investigated. They permit a determination of the relationship between crack tip field parameters, loading, and geometry. And for a given fracture criterion can be applied to the prediction of fracture in structures such as pressure vessels under in service conditions.

Fatigue and fracture mechanicsMaterial Properties and Failure MechanismsMetal Forming Simulation TechniquesSingularityFracture (geology)Crack tip opening displacementPlasticityPoint (geometry)Fracture mechanicsFinite element methodQuadratic equationStructural engineeringMaterials science
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References
Plane strain deformation near a crack tip in a power-law hardening material
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On numerically accurate finite element solutions in the fully plastic range
Computer Methods in Applied Mechanics and Engineering · 1974 · 974 citations
Singular behaviour at the end of a tensile crack in a hardening material
Journal of the Mechanics and Physics of Solids · 1968 · 2,861 citations
Crack tip finite elements are unnecessary
International Journal for Numerical Methods in Engineering · 1975 · 1,109 citations
On the use of isoparametric finite elements in linear fracture mechanics
International Journal for Numerical Methods in Engineering · 1976 · 1,487 citations
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