Stochastic study of a non-linear self-excited system with friction
Author:
Publisher
Elsevier BV
Subject
General Physics and Astronomy,Mechanical Engineering,Mechanics of Materials,General Materials Science
Reference21 articles.
1. Friction-induced vibration: should low-order models be believed?;Butlin;Journal of Sound and Vibration,2009
2. Friction-induced vibration: quantifying sensitivity and uncertainty;Butlin;Journal of Sound and Vibration,2010
3. An alternating frequency/time domain method for calculating the steady-state response of nonlinear dynamic systems;Cameron;Journal of Applied Mechanics,1989
4. A new treatment for predicting the self-excited vibrations of nonlinear systems with frictional interfaces: the constrained harmonic balance method, with application to disc brake squeal;Coudeyras;Journal of Sound and Vibration,2009
5. Dessombz, O., 2000. Analyse dynamique de structures comportant des paramètres incertains (Dynamic Analysis of Structures with Uncertain Parameters). Ph.D. thesis, Ecole Centrale de Lyon/MEGA.
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