Pages that link to "Item:Q361509"
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The following pages link to Dwell fatigue crack nucleation model based on crystal plasticity finite element simulations of polycrystalline titanium alloys (Q361509):
Displaying 17 items.
- Stabilized tetrahedral elements for crystal plasticity finite element analysis overcoming volumetric locking (Q296027) (← links)
- Experimental and computational studies of low cycle fatigue crack nucleation in a polycrystal (Q863302) (← links)
- Lengthscale-dependent, elastically anisotropic, physically-based hcp crystal plasticity: application to cold-dwell fatigue in Ti alloys (Q997025) (← links)
- Crystal plasticity modeling of slip activity in Ti-6Al-4V under high cycle fatigue loading (Q1018219) (← links)
- Modeling of oxidation and its effect on crack growth in titanium alloys (Q1573158) (← links)
- Adaptive multi-time-domain subcycling for crystal plasticity FE modeling of discrete twin evolution (Q1753894) (← links)
- Multiscale modeling of crystal plastic deformation of polycrystalline titanium at high temperatures (Q1986349) (← links)
- Identifying material parameters in crystal plasticity by Bayesian optimization (Q2168636) (← links)
- Wavelet-enriched adaptive hierarchical FE model for coupled crystal plasticity-phase field modeling of crack propagation in polycrystalline microstructures (Q2176944) (← links)
- Sparse and scalable eigenstrain-based reduced order homogenization models for polycrystal plasticity (Q2310060) (← links)
- Crystal plasticity, fatigue crack initiation and fatigue performance of advanced titanium alloys (Q2382171) (← links)
- Microstructural parameters affecting creep induced load shedding in Ti-6242 by a size-dependent crystal plasticity FE model (Q2475193) (← links)
- A multi-temporal scale approach to high cycle fatigue simulation (Q2512434) (← links)
- Accelerating cyclic plasticity simulations using an adaptive wavelet transformation based multitime scaling method (Q2952223) (← links)
- Microstructure-sensitive critical plastic strain energy density criterion for fatigue life prediction across various loading regimes (Q5160906) (← links)
- Crack tip enhanced phase-field model for crack evolution in crystalline Ti6Al from concurrent crystal plasticity FE-molecular dynamics simulations (Q6105182) (← links)
- Comprehensive model for predicting the crack initiation and propagation life of the TC4 titanium alloy considering the closure effect (Q6136397) (← links)