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Viscoelastic behavior of composite flywheels
Ryan P. Emerson
, Charles E. Bakis
Engineering Science and Mechanics
Research output
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Contribution to journal
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Article
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peer-review
4
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Scopus citations
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Keyphrases
Composite Flywheel
100%
Viscoelastic Behavior
100%
Stress-driven
66%
High Specific Energy
66%
Weight Reduction
33%
Flywheel Rotor
33%
Press-fit
33%
Energy Storage Technology
33%
Model Prediction
33%
Plane Stress
33%
Time Effect
33%
Stress-strain
33%
Efficiency Improvement
33%
Time-dependent Model
33%
Polymer Composites
33%
Flywheel
33%
Viscoelastic Model
33%
Pressure Loss
33%
Viscoelastic Solution
33%
Weighted Efficiency
33%
Stored Energy
33%
Internal Pressurization
33%
Composite Ring
33%
Power Conditioning
33%
Electrochemical Battery
33%
Rotor Model
33%
Creep Rupture
33%
Operational Loads
33%
Engineering
Composite Flywheel
100%
Rotors
66%
Anisotropic
66%
Energy Engineering
33%
Battery (Electrochemical Energy Engineering)
33%
Internals
33%
Experimental Result
33%
Energy Storage Technology
33%
Rotational
33%
Model Prediction
33%
Plane Stress
33%
Stress-Strain Relations
33%
Pressurization
33%
Pressure Loss
33%
Stored Energy
33%
Dependent Effect
33%
Composite Ring
33%
Creep Rupture
33%
Power Conditioning
33%
Operational Load
33%
Press Fit
33%
Flywheel Battery
33%