Pages that link to "Item:Q2039079"
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The following pages link to A general phase-field model for fatigue failure in brittle and ductile solids (Q2039079):
Displaying 28 items.
- Damage dynamics, rate laws, and failure statistics via Hamilton's principle (Q890403) (← links)
- Accelerating fatigue simulations of a phase-field damage model for rubber (Q2020270) (← links)
- Phase-field modeling of fatigue coupled to cyclic plasticity in an energetic formulation (Q2020761) (← links)
- A generalised phase field model for fatigue crack growth in elastic-plastic solids with an efficient monolithic solver (Q2060180) (← links)
- Electro-chemo-mechanical induced fracture modeling in proton exchange membrane water electrolysis for sustainable hydrogen production (Q2083189) (← links)
- Research on crack propagation of 3D printed material with complex cracks based on the phase-field fracture model (Q2083852) (← links)
- A combined phase-field and cohesive zone model approach for crack propagation in layered structures made of nonlinear rubber-like materials (Q2142197) (← links)
- A comparative review of peridynamics and phase-field models for engineering fracture mechanics (Q2150229) (← links)
- Phase-field modeling of fracture in high performance concrete during low-cycle fatigue: numerical calibration and experimental validation (Q2160395) (← links)
- A framework to model the fatigue behavior of brittle materials based on a variational phase-field approach (Q2176915) (← links)
- A non-isothermal thermodynamically consistent phase field model for damage, fracture and fatigue evolutions in elasto-plastic materials (Q2180479) (← links)
- Multilevel global-local techniques for adaptive ductile phase-field fracture (Q2246412) (← links)
- A phase-field model for fatigue crack growth (Q2668162) (← links)
- Probabilistic failure mechanisms via Monte Carlo simulations of complex microstructures (Q2674091) (← links)
- A phase field model for fatigue fracture in piezoelectric solids: a residual controlled staggered scheme (Q2674145) (← links)
- Phase-Field Modeling of Fatigue Crack Propagation in Brittle Materials (Q5051006) (← links)
- Phase Field Modeling of Fatigue Fracture (Q5051066) (← links)
- Phase‐field modeling of brittle fracture along the thickness direction of plates and shells (Q6070064) (← links)
- An acceleration scheme for the phase field fatigue fracture simulation with a concurrent temporal homogenization method (Q6084428) (← links)
- A concise review of small-strain phase-field modeling of ductile fracture (Q6093859) (← links)
- An enriched phase-field method for the efficient simulation of fracture processes (Q6101627) (← links)
- Accelerated high-cycle phase field fatigue predictions (Q6105197) (← links)
- An efficient phase-field model of shear fractures using deviatoric stress split (Q6145122) (← links)
- Phase field model for brittle fracture in multiferroic materials (Q6171245) (← links)
- An extended phase-field approach for the efficient simulation of fatigue fracture processes (Q6499899) (← links)
- An adaptive phase field modeling of fatigue crack growth using variable-node elements and explicit cycle jump scheme (Q6588356) (← links)
- A numerical framework based on localizing gradient damage methodology for high cycle fatigue crack growth simulations (Q6604135) (← links)
- Modelling high temperature progressive failure in C/SiC composites using a phase field model: oxidation rate controlled process (Q6669031) (← links)