The dynamic stability of structural members with a thin-walled cross-section under periodic axial follower torque and force is investigated. The basic equation of motion of these members becomes a Hill's equation, and parametrically excited unstable vibration takes place in this system. Stability ma
DYNAMIC ANALYSIS OF FLEXIBLE ROTORS SUBJECTED TO TORQUE AND FORCE
โ Scribed by C.-W. Lee; J.-S. Yun
- Publisher
- Elsevier Science
- Year
- 1996
- Tongue
- English
- Weight
- 473 KB
- Volume
- 192
- Category
- Article
- ISSN
- 0022-460X
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โฆ Synopsis
The effect of the direction of application and magnitude of loads on the stability and natural frequency of flexible rotors is analyzed, when the rotors are subject to non-conservative torque and force. The stability criterion derived from the energy and variational principle is discussed and a general Galerkin method in which admissible functions are used is employed for numerical analysis. Illustrative examples are treated to demonstrate the analytical developments and the practical relevance of the work is discussed.
๐ SIMILAR VOLUMES
A distributed transfer function synthesis is developed for modelling and analysis of rotor systems assembled from multiple flexible and rigid components. The method delivers highly accurate and closed-form analytical solutions, and is capable of treating non-self-adjoint effects, general boundary co
Dynamic stability and time responses are studied for an automatic ball balancer of a rotor with a flexible shaft. The Stodola-Green rotor model, of which the shaft is flexible, is selected for analysis. This rotor model is able to include the influence of rigid-body rotations due to the shaft flexib