Title of article :
A study on fatigue crack growth behavior subjected to a single tensile overload: Part II. Transfer of stress concentration and its role in overload-induced transient crack growth Original Research Article
Author/Authors :
S.Y. Lee، نويسنده , , T. H. Choo، نويسنده , , P.K. Liaw، نويسنده , , K. An، نويسنده , , C.R. Hubbard، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2011
Pages :
8
From page :
495
To page :
502
Abstract :
The combined effects of overload-induced enlarged compressive residual stresses and crack tip blunting with secondary cracks are suggested to be responsible for the observed changes in the crack opening load and resultant post-overload transient crack growth behavior [Lee SY, Liaw PK, Choo H, Rogge RB, Acta Mater 2010;59:485–94]. In this article, in situ neutron diffraction experiments were performed to quantify the influence of the combined effects by investigating the internal-stress evolution at various locations away from the crack tip. In the overload-retardation period, stress concentration occurs in the crack blunting region (an overload point) until a maximum crack arrest load is reached. The stress concentration is then transferred from the blunting region to the propagating crack tip (following the overload), requiring a higher applied load, as the closed crack is gradually opened. The transfer phenomena of the stress concentration associated with a crack opening process account for the nonlinearity of strain response in the vicinity of the crack tip. The delaying action of stress concentration at the crack tip is understood in conjunction with the concept of a critical stress (i.e. the stress required to open the closed crack behind the crack tip). A linear relationship between Δεeff and ΔKeff provides experimental support for the hypothesis that ΔKeff can be considered as the fatigue crack tip driving force.
Keywords :
Fatigue crack growth , Overload , Crack closure , Neutron diffraction , Crack-tip stress/strain
Journal title :
ACTA Materialia
Serial Year :
2011
Journal title :
ACTA Materialia
Record number :
1145317
Link To Document :
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