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Rotor blade shed ice length prediction
Jared Soltis
,
Jose Palacios
Aerospace Engineering
Research output
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Chapter in Book/Report/Conference proceeding
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Dive into the research topics of 'Rotor blade shed ice length prediction'. Together they form a unique fingerprint.
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Keyphrases
Rotor Blade
100%
Ultimate Tensile Strength
100%
Length Prediction
100%
High-speed Camera
50%
State Universities
50%
Pennsylvania
50%
Rotorcraft
50%
Rotor
50%
Tail Rotor
50%
Fuselage
50%
Centrifugal Force
50%
Tensile Strength
50%
Impact Ice
50%
Impact Damage
50%
Rotating Blade
50%
Ballistic
50%
Adverse Environment
50%
Euler-Bernoulli Beam
50%
Ice Adhesion Strength
50%
Projectile Impact
50%
Ice Breaking
50%
Engineering
Rotors
100%
Rotor Blade
100%
Ultimate Tensile Strength
100%
Speed Camera
33%
Rotorcraft
33%
Centrifugal Force
33%
Impact Damage
33%
Beam Model
33%
Conducted Experiment
33%
Bernoulli Beam
33%
Earth and Planetary Sciences
Tensile Strength
100%
Pennsylvania
33%
Standard Deviation
33%
Shedding
33%
Rotary Wing Aircraft
33%
Centrifugal Force
33%
Ice Breakup
33%
Test Stand
33%
Euler-Bernoulli Beams
33%
High Speed Camera
33%
Tail Rotor
33%
Impact Damage
33%
Ballistics
33%
Physics
Ultimate Tensile Strength
100%
Shedding
33%
Impact Damage
33%
Rotary Wing Aircraft
33%
Euler-Bernoulli Beams
33%
Ballistics
33%