Pages that link to "Item:Q5938420"
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The following pages link to A cohesive zone model for fatigue crack growth in quasibrittle materials (Q5938420):
Displaying 24 items.
- Intergranular strain evolution near fatigue crack tips in polycrystalline metals (Q361527) (← links)
- SGBEM modeling of fatigue crack growth in particulate composites (Q363055) (← links)
- Computational modeling of mixed-mode fatigue crack growth using extended finite element methods (Q373331) (← links)
- A cohesive zone model for fatigue crack growth allowing for crack retardation (Q546739) (← links)
- Detection of subcritical crack propagation for concrete dams (Q616097) (← links)
- Reliability-based optimization of maintenance scheduling of mechanical components under fatigue (Q695848) (← links)
- Justification of Paris-type fatigue laws from cohesive forces model via a variational approach (Q851126) (← links)
- A stochastic description on the traction-separation law of an interface with non-covalent bonding (Q904778) (← links)
- Construction of fatigue distribution in a model of cohesive forces: the case of mode III fractures (Q1033167) (← links)
- Numerical modelling and experimental validation of dynamic fracture events along weak planes (Q1033399) (← links)
- Effect of strain-dependent cohesive zone model on predictions of crack growth resistance (Q1388573) (← links)
- A new quasi-continuum constitutive model for crack growth in an isotropic solid (Q1780725) (← links)
- A numerical analysis of constraint effects in fatigue crack growth by use of an irreversible cohesive zone model (Q1959843) (← links)
- Theoretical analysis of fatigue crack growth in a coated substrate (Q1959868) (← links)
- Static and fatigue failure of quasi-brittle materials at a V-notch using a Dugdale model (Q2034257) (← links)
- Simulation and experimental validation of mixed mode delamination in multidirectional CF/PEEK laminates under fatigue loading (Q2428348) (← links)
- Crack growth with a part-through process zone in thin plates (Q2439545) (← links)
- An analysis of the delamination of an environmental protection coating under cyclic heat loads (Q2484304) (← links)
- Fatigue damage modeling in solder interconnects using a cohesive zone approach (Q2490881) (← links)
- Cohesive damage zone model for a circular crack in a quasi-brittle solid (Q2708803) (← links)
- A simulation method for high-cycle fatigue-driven delamination using a cohesive zone model (Q2952882) (← links)
- Modelling of fracture by cohesive force models: a path to pursue (Q6049495) (← links)
- A cohesive XFEM model for simulating fatigue crack growth under mixed-mode loading and overloading (Q6555344) (← links)
- An adaptive phase field modeling of fatigue crack growth using variable-node elements and explicit cycle jump scheme (Q6588356) (← links)