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ANALYSIS OF THE EFFECTS OF PARALLEL AND ANGULAR MISALIGNMENT IN HYPERSTATIC ROTORS EQUIPPED WITH OIL-FILM BEARINGS

机译:装有油膜轴承的超静力转子中平行和角错位的影响分析

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Misalignment is one of the most common sources of trouble of rotating machinery having couplings between the shafts. Ideal alignment is a chimera and the coupling flanges of the shafts are never ideally aligned, presenting angular and/or parallel misalignment (defined also as radial misalignment or offset). In particular, during the shaft rotation, if coupling misalignment between the shafts of a statically aligned line is excessive, a periodical change, of the load on the bearings in hyperstatic shaft-lines, occurs. If the rotating machine is equipped with oil-film bearings, the change of the loads on the bearings causes also the variation of their oil-film dynamic characteristics, i.e. damping and stiffness, and the complete system cannot be considered as linear. In the paper, this phenomenon is modelled accurately and analyzed by considering the simulated response of a misaligned rotor train in the time domain. A finite element model is used for the hyperstatic rotor, while bearing characteristics are calculated by integrating Reynolds equation (considering the actual type and dimensions of the bearings) as a function of the instantaneous load acting on the bearings, caused by the coupling misalignment. Nonlinear effects are highlighted and the spectral components of system response are analyzed, in order to give pertinent diagnostic information.
机译:错位是轴间具有联轴器的旋转机械最常见的故障源之一。理想的对中是嵌合体,轴的联接法兰永远不会理想地对中,从而出现角度和/或平行不对中(也定义为径向不对中或偏移)。特别地,在轴旋转期间,如果静态对准线的轴之间的联轴器未对准过度,则在超静态轴上的轴承上的负载会发生周期性变化。如果旋转机器配备了油膜轴承,轴承上负载的变化也会引起其油膜动态特性(即阻尼和刚度)的变化,并且整个系统不能视为线性系统。在本文中,通过考虑时域中未对准的转子轮系的模拟响应,可以对这种现象进行精确建模和分析。超静转子采用有限元模型,而轴承特性则是根据联轴器不对中引起的作用在轴承上的瞬时载荷积分雷诺方程(考虑轴承的实际类型和尺寸)来计算的。突出显示了非线性效应,并分析了系统响应的频谱成分,以提供相关的诊断信息。

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