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High strain rate behavior of composites with continuous fibers
H. D. Espinosa
*
, G. Emore, Y. Xu
*
Corresponding author for this work
Mechanical Engineering
Research output
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Contribution to journal
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Article
›
peer-review
6
Scopus citations
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Keyphrases
High Strain Rate
100%
Damage Mechanism
100%
Strain Hardening
100%
Continuous Fiber
100%
Finite Element Model
50%
Inertia
50%
Induced Damage
50%
Microstructural Analysis
50%
Shear Crack
50%
High Strain Rate Loading
50%
Failure Mechanism
50%
Loading Conditions
50%
Fiber Breakage
50%
Velocity Time History
50%
Strain-strain Rate
50%
Initial-boundary Value Problem
50%
Finite Deformation
50%
Geometrical Effect
50%
Pressure-shear
50%
Shear Experiment
50%
Transverse Shear
50%
Fiber Distribution
50%
Primary Damage
50%
Dynamic Shear Resistance
50%
Low-velocity Impact
50%
High Impact Velocity
50%
Interfacial Debonding
50%
Damage in Composites
50%
Plate Impact
50%
Impact Pressure
50%
Engineering
High Strain Rate
100%
Damage Mechanism
100%
Continuous Fiber
100%
Loading Condition
50%
Shear Resistance
50%
Induced Damage
50%
Boundary Value
50%
High Impact Velocity
50%
Fibre Breakage
50%
Interfacial Debonding
50%
Finite Deformation
50%
Hardening Effect
50%
Strain Rate
50%
Finite Element Modeling
50%
Failure Mechanism
50%
Impact Velocity
50%
Impact Pressure
50%
Strain Hardening
50%