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Apparent elastic properties of random fiber networks
Yikhan Lee,
Iwona Jasiuk
Mechanical Science and Engineering
National Center for Supercomputing Applications (NCSA)
Beckman Institute for Advanced Science and Technology
Bioengineering
Carl R. Woese Institute for Genomic Biology
Aerospace Engineering
Biomedical and Translational Sciences
Civil and Environmental Engineering
Center for the Study of Global Gender Equity
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Keyphrases
Elastic Response
100%
Elastic Properties
100%
Void Volume Fraction
100%
Random Fiber Networks
100%
Fiber Orientation
66%
Fiber Network
66%
Finite Element Method
33%
Monte Carlo Method
33%
Three-dimensional (3D)
33%
Natural Materials
33%
Constitutive Response
33%
Linear Elastic
33%
Synthetic Materials
33%
Shear Strain
33%
Rigid Fiber
33%
Scale Effect
33%
Displacement Boundary Condition
33%
Specimen Size
33%
Orientation Angle
33%
Fiber Diameter
33%
Fiber Length
33%
Plane Normal
33%
Apparent Stiffness
33%
In-plane Shear
33%
Normal Strain
33%
Timoshenko Beam
33%
Tensor Components
33%
High Orientation
33%
Fiber Connection
33%
Fiber Volume Fraction
33%
Fibrous Microstructure
33%
Fiber Aspect Ratio
33%
Engineering
Elastic Response
100%
Fiber Orientation
66%
Finite Element Method
33%
Stiffness Tensor
33%
Microstructure
33%
Displacement Boundary Condition
33%
Shear Strain
33%
High Aspect Ratio
33%
Fiber Diameter
33%
Fibre Length
33%
Synthetic Material
33%
Normal Strain
33%
Tensor Component
33%
Material Science
Elastic Property
100%
Volume Fraction
100%
Fiber Reinforced Material
50%
Finite Element Method
25%
Shear Strain
25%