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Partially coupled anisotropic fracture model for aluminum sheets
Allison M. Beese
, Meng Luo
, Yaning Li
, Yuanli Bai
, Tomasz Wierzbicki
Materials Science and Engineering
Research output
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Contribution to journal
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Article
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peer-review
204
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Scopus citations
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Keyphrases
Fracture Strain
100%
Fracture Model
100%
Aluminum Sheet
100%
Anisotropic Fracture
100%
Partially Coupled
100%
Tensile Test
66%
Fracture Locus
66%
Numerical Simulation
33%
Numerical Analysis
33%
Plane Stress
33%
Previous Experience
33%
Fracture Surface
33%
Three-parameter
33%
Good Accuracy
33%
Alternative Representation
33%
Plane Strain
33%
Surface Strain
33%
Cutout
33%
Thickness Reduction
33%
AA6061
33%
Plastic Response
33%
Shear Tension
33%
Flat Specimen
33%
Yield Model
33%
Tension Test
33%
Indentation Test
33%
Equivalent Strain
33%
Fracture Modeling
33%
Lankford Parameter
33%
Butterfly Specimen
33%
Digital Image Correlation System
33%
Mesh Size Effect
33%
Local Fracture
33%
Anisotropic Yield Function
33%
Planar Anisotropy
33%
Modified Mohr-Coulomb
33%
Inverse Engineering Method
33%
Plastic Properties
33%
Plastic Anisotropy
33%
Punch Indentation
33%
Dual-stage Actuator
33%
Anisotropic Plasticity
33%
Post-fracture
33%
Principal Strain
33%
Loading Frame
33%
Stress Triaxiality
33%
Dog-bone Specimen
33%
Engineering
Anisotropic
100%
Fracture Strain
100%
Aluminum
100%
Tensile Test
66%
Plane Stress
33%
Fracture Surface
33%
Influencing Factor
33%
Size Effect
33%
Good Accuracy
33%
Plane Strain
33%
Digital Image Correlation
33%
Limited Number
33%
Plastic Response
33%
Equivalent Strain
33%
Engineering Method
33%
Mesh Size
33%
Plane Anisotropy
33%
Principal Strain
33%
Computer Simulation
33%
Numerical Analysis
33%
Plastic Property
33%
Actuator
33%
Thickness Reduction
33%
Stress Triaxiality
33%
Anisotropy
33%