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Prevention of fluttering fatigue damage in a tilting pad journal bearing

机译:防止可倾瓦轴颈轴承出现飘动疲劳损伤

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摘要

Tilting pad journal bearings have been widely used to support high-pressure/fast rotating turbine rotors owing to their inherent dynamic stability characteristics. However, fatigue damage in the upper unloaded pads and the break of locking pins by pad fluttering continuously take place in actual steam turbines. The purpose of this paper is to develop a bearing model that can prevent bearing problems effectively using pad fluttering in a tilting pad journal bearing. A developed bearing model with a wedged groove is suggested from studies of a fluttering mechanism performed in previous research. The fluttering characteristics of the upper unloaded pad are studied experimentally in order to verify the reliability of the bearing model. It was found that very little pad fluttering nearly occurs in the bearing model under various experimental conditions. In addition, no type of bearing failures by pad fluttering was detected in applications involving actual steam turbines.
机译:倾斜垫轴颈轴承由于其固有的动态稳定性能,已被广泛用于支撑高压/快速旋转的涡轮转子。但是,在实际的蒸汽轮机中,持续不断地发生上部卸载垫的疲劳损伤以及由于垫颤动而导致的销钉断裂。本文的目的是开发一种轴承模型,该模型可以通过在可倾瓦块轴颈轴承中使用瓦块颤动有效地防止轴承问题。通过对先前研究中进行的颤振机理的研究,提出了一种带有楔形凹槽的轴承模型。为了验证轴承模型的可靠性,通过实验研究了上部卸载垫的颤动特性。已经发现,在各种实验条件下,轴承模型中几乎不发生垫颤动。此外,在涉及实际蒸汽轮机的应用中,未检测到因垫块颤振引起的轴承故障。

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