The stability analysis of a slider-crank mechanism due to the existence of two-component parametric resonance
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics,Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science,Modelling and Simulation
Reference16 articles.
1. Badlani, M., Kleinhenz, W., 1979. Dynamic stability of elastic mechanisms. ASME, Journal of Mechanical Design 101, 149–153.
2. Badlani, M., Midha, A., 1982. Member initial curvature effects on the elastic slider-crank mechanism response. ASME, Journal of Mechanical Design 104, 159–167.
3. Beale, D., Lee, S.W., 1996. Nonlinear equation instability boundaries in flexible mechanisms. ASME, Journal of Mechanism and Machine Theory 31, 215–227.
4. Bolotin, V.V., 1964. The Dynamic Stability of Elastic Systems, Holden–Day.
5. Chu, S.-C., Pan, K.C., 1975. Dynamic response of a high-speed slider-crank mechanism with an elastic connecting rod. ASME, Journal of Engineering for Industry 97, 542–550.
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1. Analytical Solution of a Nonlinear Index-Three DAEs System Modelling a Slider-Crank Mechanism;Discrete Dynamics in Nature and Society;2015
2. The h-, p-, and r-refinements of Finite Element Analysis of Flexible Slider Crank Mechanism;Journal of Vibration and Control;2007-04
3. The dynamics of a slider-crank mechanism with an initially curved coupler under two-component parametric resonance;Journal of Sound and Vibration;2005-02
4. Dynamic instability analysis of high-speed flexible four-bar mechanisms;Mechanism and Machine Theory;2002-11
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