Pages that link to "Item:Q1415894"
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The following pages link to Effect of electric fields on fracture behavior of ferroelectric ceramics. (Q1415894):
Displaying 24 items.
- Some recent advances in 3D crack and contact analysis of elastic solids with transverse isotropy and multifield coupling (Q314662) (← links)
- Effect of electric boundary conditions on crack propagation in ferroelectric ceramics (Q318046) (← links)
- Phase-field modeling of fracture in ferroelectric materials (Q338727) (← links)
- Effects of electric field and poling on the mode I energy release rate in cracked piezoelectric ceramics at cryogenic temperatures (Q379148) (← links)
- Study on electroelastic field concentration around the electrode tip in multilayer ferroelectric actuators of two designs and their optimizations (Q422582) (← links)
- Tuning of non-uniform switch toughening in ferroelectric composites by an electric field (Q529336) (← links)
- Cracks with surface charge in poled ferroelectrics (Q817505) (← links)
- Numerical analysis of an electrode embedded between dissimilar electrostrictive materials (Q837886) (← links)
- Effect of domain switching on kinking of a crack in a ferroelectric material (Q857511) (← links)
- Effect of a transverse electric field on crack kinking in ferroelectric ceramics (Q954237) (← links)
- On the fracture toughness anisotropy of mechanically poled ferroelectric ceramics (Q973253) (← links)
- Fracture analysis in continuously nonhomogeneous magneto-electro-elastic solids under a thermal load by the MLPG (Q991713) (← links)
- Electrical fracture toughness for a conducting crack in ferroelectric ceramics (Q1434739) (← links)
- Influence of domain switching zones on the fracture toughness of ferroelectrics (Q1612647) (← links)
- Toughening effect of ferroelectric ceramics induced by domain switching and dislocations (Q1792305) (← links)
- Fatigue crack growth in ferroelectrics driven by cyclic electric loading (Q1968688) (← links)
- Influences of crack-face electric boundary conditions on stress intensity factors of ferroelectric single crystals (Q2240383) (← links)
- Influence of inclined electric fields on the effective fracture toughness of piezoelectric ceramics (Q2262833) (← links)
- Tubular channel growth in piezoelectric ceramics under electric fields (Q2267256) (← links)
- Extended semi-analytical investigations of crack growth resistance behavior in ferroelectric materials (Q2392853) (← links)
- Cracks in complex bodies: Covariance of tip balances (Q2427387) (← links)
- A COD fracture model of ferroelectric ceramics with applications in electric field induced fatigue crack growth (Q2439481) (← links)
- Crack growth in ferroelectric ceramics under electric loading (Q2575207) (← links)
- Finite element modeling of electro-mechanically coupled analysis for ferroelectric ceramic materials with defects. (Q5930704) (← links)