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考虑轴承间隙和太阳轮轮齿裂纹的行星齿轮箱动力学建模。

Planetary Gearbox Dynamic Modeling Considering Bearing Clearance and Sun Gear Tooth Crack.

机构信息

Department of Mechanical Engineering, University of Alberta, Edmonton, AB T6G 1H9, Canada.

出版信息

Sensors (Basel). 2021 Apr 9;21(8):2638. doi: 10.3390/s21082638.

Abstract

Planetary gearbox systems are critical mechanical components in heavy machinery such as wind turbines. They may suffer from various failure modes, due to the harsh working environment. Dynamic modeling is a useful method to support early fault detection for enhancing reliability and reducing maintenance costs. However, reported studies have not considered the sun gear tooth crack and bearing clearance simultaneously to analyze their combined effect on vibration characteristics of planetary gearboxes. In this paper, a dynamic model is developed for planetary gearboxes considering the clearance of planet gear, sun gear, and carrier bearings, as well as sun gear tooth crack levels. Bearing forces are calculated considering bearing clearance, and the dynamic model equations are updated accordingly. The results reveal that the combination of bearing clearances can affect the vibration response with sun gear tooth crack by increasing the kurtosis. It is found that the effect of planet gear bearing clearance is very small, while the sun gear and carrier bearing clearance has clear impact on the vibration responses. These findings suggest that the incorporation of bearing clearance is important for planetary gearbox dynamic modeling.

摘要

行星齿轮箱系统是风力涡轮机等重型机械中的关键机械部件。由于恶劣的工作环境,它们可能会出现各种失效模式。动态建模是支持早期故障检测的一种有用方法,可提高可靠性并降低维护成本。然而,已有的研究尚未同时考虑太阳轮齿裂纹和轴承间隙来分析它们对行星齿轮箱振动特性的综合影响。本文针对行星齿轮箱,建立了一个同时考虑行星齿轮、太阳轮和轴承间隙以及太阳轮齿裂纹程度的动态模型。考虑了轴承间隙对轴承力的影响,并相应地更新了动态模型方程。结果表明,轴承间隙的组合会通过增加峰度来影响带有太阳轮齿裂纹的振动响应。研究发现,行星齿轮轴承间隙的影响很小,而太阳轮和轴承间隙对振动响应有明显影响。这些发现表明,在行星齿轮箱的动态建模中,纳入轴承间隙是很重要的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa0d/8070410/667d3f7a9116/sensors-21-02638-g001.jpg

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