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Two‐dimensional stress intensity factor computations using the boundary element method

International Journal for Numerical Methods in Engineering · 1981 · Vol. 17(3) · pp. 387–404
George E. BlandfordAnthony R. IngraffeaJames A. Liggett

Abstract

Abstract A multidomain boundary element formulation for the analysis of general two‐dimensional plane strain/stress crack problems is presented. The numerical results were accurate and efficient. The analyses were performed using traction singular quater‐point boundary elements on each side of the crack tip(s) with and without transition elements. Traction singular quarter‐point boundary elements contain the correct √ r displacement and 1/√ r traction variations at the crack tip. Transition elements are appended to the traction singular elements to model the √ r displacement variation. The 1/√ r traction singularity is not represented with these elements. Current research studies for the crack propagation analysis of quasi‐static and fatigue fracture problems are discussed.

Fatigue and fracture mechanicsNumerical methods in engineeringMechanical stress and fatigue analysisTraction (geology)Stress intensity factorSingularityPlane stressBoundary element methodFinite element methodComputationMathematicsDisplacement (psychology)Crack tip opening displacement
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Cited by
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References
On the Stress Distribution at the Base of a Stationary Crack
Journal of Applied Mechanics · 1957 · 3,316 citations
Effective numerical treatment of boundary integral equations: A formulation for three‐dimensional elastostatics
International Journal for Numerical Methods in Engineering · 1976 · 677 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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