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The first one is related to the crack closure effect near the surface, it would imply a smaller effective ΔK close to the surface, and therefore a slower crack growth rate.
This dependence is analyzed by the crack closure effect, and the FCGR model is improved by introducing an effective energy dissipation rate concept.
Both the J integral range ΔJ, and the effective J integral range ΔJeff, which accounts for the crack closure effect, are found to be excellent to consolidate crack growth rates for the high temperature fatigue conditions.
The presence of compressive residual stresses caused the crack closure effect, which increased the level of crack opening load and therefore reduced the effective load range.
It introduces compressive stresses that produce crack closure effect.
Moreover, the crack closure effect in the fatigue crack growth under PWR environment has been studied.
Similar(23)
Furthermore, plastic zone and crack closure effects were studied.
Plasticity-induced crack opening and closure effects are explicitly taken into account.
The different choices associated to anisotropic damage theories and crack closure effects are presented and discussed.
The former exhibits more crack closure effects, partly due to stronger asperity-induced closure.
The representation also relies on the Paris Erdogan equation completed with crack closure effects.
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