首页 /研究 /Torsional and lateral vibrations in flexible rotor systems with friction
OTHER

Torsional and lateral vibrations in flexible rotor systems with friction

Nenad Mihajlović

发表年份
2005
引用次数
38

摘要

Self-sustained vibrations which can appear in mechanical systems often limit the performance of such systems or can even cause failure or damage to such systems. Moreover, different types of vibration can appear in dynamical systems. In order to gain an improved understanding and to predict different types of vibrations which appear in mechanical systems, it is important to understand the causes for such vibrations and the interaction between those vibrations. In this thesis, we address on the one hand friction-induced vibrations in flex- ible mechanical systems, and on the other hand lateral vibrations caused by mass- unbalance in rotor systems, and the interaction between those two types of vibrations. Although a lot of theoretical research has been done on vibrations in flexible rotor systems, a limited number of papers is available which include experimental results on the friction-induced vibrations and on the interaction between different types of vibrations. For this purpose, we have designed and constructed an experimental drill-string set-up which exhibits both types of vibration. The set-up consists of a DC-motor, two rotating (upper and lower) discs, a low-stiffness string, which connects the two discs, and an additional brake at the lower disc. The lower disc can rotate around its geometric center and is also free to move in lateral direction. The configuration of the experimental set-up is representative for many other mechanical systems, in which friction or unbalance can deteriorate the system performance by the appearance of vibrations. For example, when the lower disc is fixed in lateral direction (i.e. when the lower disc only rotates), the system forms a configuration of two masses, coupled by a flexibility, of which one is subject to friction and the other is driven by an actuator. In this context, one can think of set-ups such as printers, pick and place machines, industrial and domestic robots, braking mechanisms and many others. Moreover, when mass-unbalance is present at the lower disc and the disc can move in lateral direction, this configuration can be recognized in drilling systems which are used for exploration of oil and gas, in electrical shavers, in various turbines, pumps, fans and so on. The drill-string set-up is modelled and the parameters of the model are estimated. The comparison between responses of the experimental set-up and estimated model indicates a high accuracy of the obtained parameter estimates. The steady-state behaviour of the drill-string system has been analyzed when various constant input voltages are applied to the DC motor; first, when only torsional and no lateral vi- brations occur and, second, when both torsional and lateral vibrations appear in the system. When analyzing the friction-induced vibrations a discontinuous static friction model is used. We have chosen such a model and not a more complicated dynamical friction model since it accounts for the friction characteristics which are crucial for the global dynamics of the system but avoids unnecessary complexity. A discontin- uous friction model leads to a discontinuous model of the system dynamics which exhibits both friction-induced vibrations and the interaction between friction-induced vibrations and vibrations due to mass-unbalance. As a result of the analysis on a theoretical, numerical and experimental level the following conclusions are drawn. When analyzing the set-up with only friction-induced torsional vibrations and no lateral vibrations, the main conclusion is that a subtle interplay of negative damping characteristics at low velocities and viscous friction at higher velocities determines the occurrence and nature of friction-induced limit cycling. It also determines the range of parameters for which these limit cycles sustain. Furthermore, the level of posi- tive damping at very low velocities relative to the negative damping level at slightly higher velocities determines whether torsional vibrations wi

关键词

VibrationRotor (electric)StiffnessStructural engineeringMechanical systemEngineeringAcousticsPhysicsMechanical engineering

相关论文

查看 OTHER 分类全部论文