Pages that link to "Item:Q2486441"
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The following pages link to Dual boundary element assessment of three-dimensional fatigue crack growth (Q2486441):
Displaying 24 items.
- SGBEM modeling of fatigue crack growth in particulate composites (Q363055) (← links)
- Boundary element simulation of fatigue crack growth in multi-site damage (Q463491) (← links)
- A fast BEM for the analysis of damaged structures with bonded piezoelectric sensors (Q649259) (← links)
- Three dimensional experimental and numerical multiscale analysis of a fatigue crack (Q649333) (← links)
- A post-processor for fatigue crack growth analysis based on a finite element stress field (Q839256) (← links)
- A fast 3D dual boundary element method based on hierarchical matrices (Q957431) (← links)
- Discussions of three-dimensional models for mixed-mode fatigue crack growth (Q994048) (← links)
- The advanced simulation of fatigue crack growth in complex 3D structures (Q1020287) (← links)
- Elastoplastic finite element analysis of three-dimensional fatigue crack growth in aluminum shafts subjected to axial loading (Q1302187) (← links)
- Modelling of growth of three-dimensional cracks by a continuous distribution of dislocation loops (Q1370263) (← links)
- A remeshing algorithm for three-dimensional crack growth and intersection with surfaces or cracks in non-coplanar planes (Q1577790) (← links)
- A three-dimensional crack growth simulator with displacement discontinuity method (Q1653491) (← links)
- Dual boundary element analysis of fatigue crack growth, interaction and linkup (Q1654950) (← links)
- Multiple-cracked fatigue crack growth by BEM (Q1904899) (← links)
- A general phase-field model for fatigue failure in brittle and ductile solids (Q2039079) (← links)
- A dual interpolation boundary face method with Hermite-type approximation for elasticity problems (Q2190118) (← links)
- Isogeometric boundary element methods for three dimensional static fracture and fatigue crack growth (Q2308965) (← links)
- Analysis of two-dimensional fatigue crack propagation in thin aluminum plates using the Paris law modified by a closure concept (Q2325487) (← links)
- 3D fatigue crack propagation: Experimental studies (Q2489081) (← links)
- Investigation of 3D crack propagation problems via fast BEM formulations (Q2576520) (← links)
- Efficient simulation of 3D fatigue crack growth based on boundary elements (Q3176866) (← links)
- A fast dual boundary element method for 3D anisotropic crack problems (Q3549821) (← links)
- (Q4273940) (← links)
- An automatic procedure for mixed‐mode crack growth analysis (Q4327170) (← links)