4.7 Article

Vibration energy flow transmission in systems with Coulomb friction

期刊

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.ijmecsci.2021.106932

关键词

Vibration transmission; Force transmissibility; Energy dissipation; Power flow analysis; Coulomb friction; Nonlinear contact

资金

  1. National Natural Science Foundation of China [12172185, 51605233]
  2. Zhejiang Provincial Natural Science Foundation of China [LY22A020006]

向作者/读者索取更多资源

The study reveals that dry friction in dynamic systems can suppress vibration response and dissipate vibrational energy at both low and high frequencies. Frictional contact at interfaces can increase force transmissibility and energy transfer, especially at high excitation frequencies.
This study focusses on the vibration transmission and energy flow characteristics of low dimensional models of dynamical systems with Coulomb friction. The Karnopp friction model and smooth Coulomb friction models are employed to estimate the dry friction force. The steady-state responses of the system are determined by the harmonic balance (HB) approximations with numerical continuations and a time-marching method. The level of vibration transmission and energy dissipation within the system are assessed by the force transmissibility and power flow variables. For a single degree-of-freedom oscillator system, in the low- and high-frequency ranges away from the resonance, it is found that the dry frictional contact can suppress the vibration response and effectively dissipate vibrational energy. For the coupled system, the existence of frictional contact at the interface can lead to a significant growth in the force transmissibility and energy transfer from the force-excited subsystem to the secondary system, especially at the high excitation frequencies. The interfacial frictional contact can also result in a large amount of energy dissipation at the interface. The studies show that vibration transmission and energy dissipation in a dynamic system with contacting subsystems can be tailored by adjusting the properties of the frictional contact. Design strategies can be developed using frictional contacts for vibration suppression by minimizing vibration energy transmission or maximizing energy dissipation.

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