Oscillation pattern of stick-slip vibrations |
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Authors: | Jaeyoung Kang Charles M. Krousgrill |
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Affiliation: | a School of Mechanical Engineering, 585 Purdue Mall, Purdue University, West Lafayette, IN 47907-2088, USA b Division of Mechanical and Automotive Engineering, College of Engineering, Kongju National University, Cheonan-Si, Republic of Korea |
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Abstract: | This paper studies the stick-slip oscillations of discrete systems interacting with translating energy source through a non-linear smooth friction curve. The stick-slip limit cycle oscillations of a single degree-of-freedom model are examined by means of numerical time-integration and analytical methods. Similar approaches are also applied to the model of the coupled friction oscillator. Particularly, it is found that the steady-state response of the coupled oscillator can be divided into two different forms of oscillation (mode-merged and mode-separated oscillations) according to the frequency separation of two modes. The oscillation pattern of the steady-state response is shown to depend on system parameters such as detuning factor, energy source speed, and normal contact load. |
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Keywords: | Stick-slip Friction coupled oscillator Mode-coupling Oscillation pattern |
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