Pages that link to "Item:Q2489074"
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The following pages link to Experimental and numerical investigations on the influence of the loading direction on the fatigue crack growth (Q2489074):
Displaying 11 items.
- Computational modeling of mixed-mode fatigue crack growth using extended finite element methods (Q373331) (← links)
- Effects of mixed-mode overloading on the mixed-mode I+II fatigue crack growth (Q398163) (← links)
- Overload effects in fatigue crack growth by crack-tip blunting (Q993983) (← links)
- A nonlocal treatment technique based on the background cell concept for micro-mechanical damage modeling (Q2353334) (← links)
- Fatigue crack propagation after overloading and underloading at negative stress ratios (Q2382093) (← links)
- Study of underload effects on the delay induced by an overload in fatigue crack propagation (Q2382099) (← links)
- Finite element analysis of fatigue crack growth with interspersed mode I and mixed mode overloads (Q2484855) (← links)
- The effect of steady torsion on fatigue crack growth in shafts (Q2489078) (← links)
- Mixed-mode fatigue crack growth behaviour in aluminium alloy (Q2489079) (← links)
- (Q4500785) (← links)
- A numerical framework based on localizing gradient damage methodology for high cycle fatigue crack growth simulations (Q6604135) (← links)