无油挤压膜减振器与圆柱滚子轴承组合的动态性能研究。

Journal of Engineering for Gas Turbines and Power Pub Date : 2019-07-01 Epub Date: 2019-02-06 DOI:10.1115/1.4042418
H Meeus, J Fiszer, G Van De Velde, B Verrelst, D Lefeber, P Guillaume, W Desmet
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引用次数: 6

摘要

挤压膜阻尼器(SFDs)被广泛用于耗散转子振动引起的机械能以及提高转子系统的整体稳定性。特别是涡轮机器的转子,支承在小阻尼滚动轴承(reb)上,主要对不平衡激励和高振幅振动敏感。为了确保安全运行,在最终的工业应用之前,需要对潜在的失效模式(如缺油阻尼器状态)进行充分的检查。因此,本研究项目的目的是评估转子支撑的性能,以实现SFD的完全缺油。本文简要介绍了一个学术性转子动力试验台。对某型汽轮机的两种静态径向载荷工况进行了模拟满负荷和空转工况的试验研究。显然,测量结果暴露出严重的振动问题。由于明显的各向异性轴承刚度,甚至出现了分裂先旋转模式。此外,对于最小径向载荷轴承,在高不平衡激励下出现高度非线性行为。因此,滚子开始发出嘎嘎声,这将对整体轴承寿命产生负面影响。为了解释非线性行为的本质,采用了先进的准静态轴承模拟。为了帮助减轻振动问题,提出了一些可能的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Performance of an Oil Starved Squeeze Film Damper Combined With a Cylindrical Roller Bearing.

Squeeze film dampers (SFDs) are widely used to dissipate mechanical energy caused by rotor vibrations as well as to improve overall stability of the rotor system. Especially turbomachine rotors, supported on little damped rolling element bearings (REBs), are primarily sensitive to unbalance excitation and thus high amplitude vibrations. To ensure safe operation, potential failure modes, such as an oil starved damper state, need to be well examined prior to the introduction in the ultimate industrial application. Hence, the aim of this research project is to evaluate the performance of the rotor support for a complete oil starvation of the SFD. An academic rotor dynamic test bench has been developed and briefly presented. Experimental testing has been conducted for two static radial load cases resembling the full load and idle condition of a certain turbomachine. Evidently, the measurement results exposed severe vibration problems. Even a split first whirl mode arises due to a pronounced anisotropic bearing stiffness. Moreover, for the least radially loaded bearing, highly nonlinear behavior emerged at elevated unbalance excitation. Consequently, the rollers start to rattle which will have a negative effect on the overall bearing lifetime. To explain the nature of the nonlinear behavior, advanced quasi-static bearing simulations are exploited. A number of possible solutions are proposed in order to help mitigate the vibration issues.

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