Three dimensional microstructural effects on plane strain ductile crack growth
Explore this paper's citation graph
- Type
- article
- Published
- 2006-10-01
- Cited by
- 55
- References
- 17
- Access
- Open access
- OpenAlex
- https://openalex.org/W1999449323
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:137239316
Keywords
Materials science, Nucleation, Plane stress, Composite material, Crack closure
References
- On localization in ductile materials containing spherical voids
- High-temperature crack-arrest behavior in 152-mm-thick SEN wide plates of quenched and tempered A 533 grade B class 1 steel
- Plastic flow and fracture behavior of ductile materials incorporating void nucleation, growth and interaction
- Three dimensional analysis of dynamic ductile crack growth in a thin plate
- A tangent modulus method for rate dependent solids
- Localization of deformation in rate sensitive porous plastic solids
- Analysis of the cup-cone fracture in a round tensile bar
- The Latent Energy Remaining in a Metal after Cold Working
- Effect of crack meandering on dynamic, ductile fracture
- Mesh effects in the analysis of dynamic ductile crack growth
- 3D analyses of the effect of weld orientation in Charpy specimens
- Numerical modeling of ductile crack growth in 3-D using computational cell elements
- Void Nucleation Effects in Biaxially Stretched Sheets
- Influence of void nucleation on ductile shear fracture at a free surface
- Influence of voids on shear band instabilities under plane strain conditions
- The Gurson-Tvergaard-Needleman-model for rate and temperature-dependent materials with isotropic and kinematic hardening
- Material Failure by Void Growth to Coalescence
Cited by
- Mechanics and Mechanisms of Creep and Ductile Fracture
- Micromechanisms of fracture in nodular cast iron: From experimental findings towards modeling strategies – A review
- Grain boundary crack growth in metastable titanium β alloys
- Discrete modelling of ductile crack growth by void growth to coalescence
- The influence of the reinforcing particle shape and interface strength on the fracture behavior of a metal matrix composite
- Microstructure-based finite element analysis of strain localization behavior in AA5754 aluminum sheet
- Damage characterization and modeling of a 7075-T651 aluminum plate
- The effect of the irregular interface geometry in deformation and fracture of a steel substrate–boride coating composite
- Identification of damage parameters for Ti‐6Al‐4V titanium alloy using continuum damage mechanics
- Analysis of post-buckling process and collapse of FCC single crystal plate under uniaxial compression based on proposed criterion of micro-crack nucleation deduced by shock wave theory
- Ductile crack propagation by plastic collapse of the intervoid ligaments
- Crack interaction with microstructure
- Analysis of a high intensity shear zone between overlapping fiber ends in a polymer matrix composite
- An Examination of Anisotropic Void Evolution in Aluminum Alloy 7075
- Boundary damage effects on the evolution of creep strain
- Forming Limit Stress Diagram Prediction of Aluminum Alloy 5052 Based on GTN Model Parameters Determined by In Situ Tensile Test
- Void growth and coalescence in f.c.c. single crystals
- Ductile fracture locus of Ti–6Al–4V titanium alloy
- Size effects due to secondary voids during ductile crack propagation
- A physically motivated anisotropic tensorial representation of damage with separate functions for void nucleation, growth, and coalescence
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