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Vibration energy flow transmission in systems with Coulomb friction
Wei Dai,
Jian Yang
, Marian Wiercigroch
Department of Mechanical, Materials and Manufacturing Engineering
Research output
:
Journal Publication
›
Article
›
peer-review
51
Citations (Scopus)
Overview
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Keyphrases
Flow Transmission
100%
Vibration Energy
100%
Energy Dissipation
100%
Vibration Energy Flow
100%
Coulomb Friction
100%
Frictional Contact
100%
Vibration Transmission
75%
Force Transmissibility
50%
Energy Transfer
25%
Single Degree of Freedom
25%
Flow Characteristics
25%
Power Flow
25%
Flow Variables
25%
Harmonic Balance Method
25%
Design Strategy
25%
System Dynamics
25%
Energy Transmission
25%
Energy Flow
25%
Vibration Suppression
25%
Coupled System
25%
Excitation Frequency
25%
High-frequency Range
25%
High Excitation
25%
Steady-state Response
25%
Time-marching Method
25%
Vibration Response
25%
Dynamical Systems
25%
Low-dimensional Models
25%
Dry Frictional Contact
25%
Numerical Continuation
25%
Energy Maximizing
25%
Secondary System
25%
Oscillator Systems
25%
Dry Friction Force
25%
Karnopp Friction Model
25%
Vibrational Energy
25%
Coulomb Friction Model
25%
Engineering
Flow Transmission
100%
Energy Flow
100%
Coulomb Friction
100%
Frictional Contact
100%
Energy Dissipation
80%
Transmissions
60%
Energy Engineering
40%
Force Transmissibility
40%
Friction Model
40%
Degree of Freedom
20%
Dimensional Model
20%
Power Flow
20%
Flow Characteristics
20%
Harmonic Balance
20%
Flow Variable
20%
Single Degree
20%
Energy Transmission
20%
Coupled System
20%
Excitation Frequency
20%
State Response
20%
Friction Force
20%
Secondary System
20%
Dry Friction
20%