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Influence of gyroscopic effect on hypoid and bevel geared system dynamics
Tao Peng,
Teik C. Lim
Research output
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Contribution to journal
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Article
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peer-review
19
Scopus citations
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Dive into the research topics of 'Influence of gyroscopic effect on hypoid and bevel geared system dynamics'. Together they form a unique fingerprint.
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Keyphrases
System Dynamics
100%
Gear System
100%
Hypoid
100%
Gyroscopic Effect
100%
Gear Dynamics
75%
Non-linear Time
50%
Geared Rotor System
50%
Hypoid Gear
50%
Gyroscopic
50%
Vibratory Response
50%
Traditional Models
25%
Dynamic Response
25%
Gear Mesh
25%
Transmission Error
25%
Dynamic Simulation
25%
Numerical Integration
25%
Rotor
25%
Meshing Characteristics
25%
Non-parallel
25%
Multibody Dynamics
25%
Linear Time Invariant
25%
Driveline
25%
Time-varying Dynamics
25%
Multi-degree-of-freedom (multi-DOF)
25%
Dynamic Equations
25%
Linear Time-invariant Model
25%
Vibration Response
25%
Driveline System
25%
Stiffness Variation
25%
Gyroscopic Matrix
25%
Time-varying Model
25%
Generalized Representation
25%
Rotational Axis
25%
Rotor Dynamics
25%
Engineering
Systems Dynamics
100%
Gyroscopic Effect
100%
Rotor System
50%
Hypoid Gear
50%
Linear Time Invariant
50%
Driveline
50%
Degree of Freedom
25%
Time Domain
25%
Computer Simulation
25%
Frequency Domain
25%
Transmission Error
25%
Gear Mesh
25%
Rotors
25%
Dynamic Response
25%
Dynamic Models
25%
Numerical Integration
25%
Multibody Dynamics
25%
Rotational Axis
25%
Rotor Dynamics
25%