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Investigation of the effect of controllable dampers on limit states of rotor systems

机译:研究可控阻尼器对转子系统极限状态的影响

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The unbalance and time varying loading are the principal sources of lateral vibration of rotors and of increase of forces transmitted through the coupling elements into the stationary part. These oscillations and force effects can be considerably reduced if damping devices are added to the coupling elements placed between the rotor and its casing. The theoretical studies and practical experience show that to achieve their optimum performance their damping effect must be controllable. This article focuses on investigation of influence of controlled damping in the rotor supports on its limit state of deformation, fatigue failure and on magnitude of the forces transmitted into the stationary part. The analysed system is a flexible rotor with one disc driven by an electric DC motor and loaded by the disc unbalance and by technological forces depending on the rotor angular position. In the computational model the system vibration is governed by a set of nonlinear differential equations of the first and second orders. To evaluate the fatigue failure both the flexural and torsional oscillations are taken into account. The analysis is aimed at searching for the intervals of angular speeds, at which the rotor can be operated without exceeding the limit states.
机译:不平衡和随时间变化的负载是转子侧向振动和通过耦合元件传递到固定部分的力增加的主要来源。如果将阻尼装置添加到放置在转子与其外壳之间的耦合元件上,则可以显着降低这些振荡和作用力。理论研究和实践经验表明,要实现其最佳性能,其阻尼效果必须是可控的。本文着重研究转子支架中受控阻尼对其变形极限状态,疲劳破坏以及传递到固定部分的力大小的影响。所分析的系统是一种挠性转子,其中一个圆盘由直流电动机驱动,并由圆盘不平衡和取决于转子角位置的技术力加载。在计算模型中,系统振动由一组一阶和二阶非线性微分方程控制。为了评估疲劳破坏,既要考虑弯曲振动也要考虑扭转振动。该分析旨在搜索角速度的间隔,在该间隔下转子可以在不超过极限状态的情况下运行。

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