Pages that link to "Item:Q597796"
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The following pages link to Predictions of mixed mode interface crack growth using a cohesive zone model for ductile fracture (Q597796):
Displaying 15 items.
- A micromechanics based damage model for composite materials (Q422584) (← links)
- Effect of residual stresses on interface crack growth by void expansion mechanism (Q712419) (← links)
- Mode mixity and nonlinear viscous effects on toughness of interfaces (Q837240) (← links)
- A combined dislocation-cohesive zone model for fracture in a confined ductile layer (Q865212) (← links)
- Effect of pure mode I, II or III loading or mode mixity on crack growth in a homogeneous solid (Q994660) (← links)
- A new approach to predicting interfacial crack growth (Q1369403) (← links)
- Effect of strain-dependent cohesive zone model on predictions of crack growth resistance (Q1388573) (← links)
- Cohesive traction-separation relations for plate tearing under mixed mode loading (Q1788433) (← links)
- Interface failure by cavity growth to coalescence (Q1976565) (← links)
- Bimaterial interface fracture: a discrete dislocation model (Q2506852) (← links)
- Use of interface elements in linear crack analysis. Application to linear analysis of mixed mode cracking (Q2748726) (← links)
- The mode I crack growth resistance of metallic foams. (Q5926701) (← links)
- Crack growth predictions by cohesive zone model for ductile fracture (Q5953062) (← links)
- A damage to crack transition model accounting for stress triaxiality formulated in a hybrid nonlocal implicit discontinuous Galerkin-cohesive band model framework (Q6565192) (← links)
- Mesh refinement strategies without mapping of nonlinear solutions for the generalized and standard FEM analysis of 3-D cohesive fractures (Q6565253) (← links)