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
DYNAMIC RESPONSE OF AN UNBALANCED ROTOR SUPPORTED ON BALL BEARINGS
β Scribed by M. TIWARI; K. GUPTA; O. PRAKASH
- Publisher
- Elsevier Science
- Year
- 2000
- Tongue
- English
- Weight
- 605 KB
- Volume
- 238
- Category
- Article
- ISSN
- 0022-460X
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β¦ Synopsis
The non-linear dynamic analysis of a horizontal rigid rotor having unbalance and supported on ball bearings has been done. The non-linearity is both due to Hertzian contact and the radial internal clearance. The system is excited by the varying compliance frequency and the rotational frequency. For "nding out the "xed point and stability of the system the concept of higher order Poincare map and interpolation technique has been applied. The results show the appearance of instability and chaos in the dynamic response as the speed of the rotor-bearing system is changed. Period doubling and mechanism of intermittency have been observed as the routes to chaos. The experimental investigations for a horizontal rotor-bearing system have shown the e!ect of varying compliance and increase in non-linearity due to radial internal clearance of the ball bearing. The orbit plots, cascade plots and frequency plots bring out the e!ect of radial internal clearance on the rotor response.
2000 Academic Press
π SIMILAR VOLUMES
This paper is devoted to the study of foundation e!ects on the dynamic characteristics of rotor-bearing systems. The modelling and analysis of rotor-bearing}foundation systems based on the "nite element method are discussed. A substructure procedure which includes the foundation e!ects in the motion