首页> 外文期刊>Meccanica: Journal of the Italian Association of Theoretical and Applied Mechanics >Planetary gearbox with localised bearings and gears faults: simulation and time/frequency analysis
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Planetary gearbox with localised bearings and gears faults: simulation and time/frequency analysis

机译:行星齿轮箱具有局部轴承和齿轮故障:仿真和时间/频率分析

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摘要

Planets bearings of planetary gear sets exhibit high rate of failure; detection of these faults which may result in catastrophic breakdowns have always been challenging. The objective of this paper is to investigate the planetary gears vibration properties in healthy and faulty conditions. To seek this goal a previously proposed lumped parameter model (LPM) of planetary gear trains is integrated with a more comprehensive bearing model. This modified LPM includes time varying gear mesh and bearing stiffness and also nonlinear bearing stiffness due to the assumption of Hertzian contact between the rollers/balls and races. The proposed model is completely general and accepts any inner/outer race bearing defect location and profile in addition to its original capacity of modelling cracks and spalls of gears; therefore, various combinations of gears and bearing defects are also applicable. The model is exploited to attain the dynamic response of the system in order to identify and analyze localized faults signatures for inner and outer races as well as rolling elements of planets bearings. Moreover, bearing defect frequencies of inner/outer race and ball/roller and also their sidebands are discussed thoroughly. Finally, frequency response of the system for different sizes of planets bearing faults are compared and statistical diagnostic algorithms are tested to investigate faults presence and growth.
机译:行星齿轮组的行星轴承表现出高的失效率;检测可能导致灾难性崩溃的这些故障一直在具有挑战性。本文的目的是研究行星齿轮振动性能健康和故障条件。为了寻求这一目标,先前提出的行星齿轮列车的集成参数模型(LPM)与更全面的轴承模型集成。该改性的LPM包括时变齿轮网和轴承刚度以及由于滚轮/球和比赛之间的赫兹·接触而导致的非线性承载刚度。拟议的模型完全是通用的,除了其原始容量的建模裂缝和齿轮齿轮的原始容量之外,还接受任何内/外圈轴承缺陷位置和轮廓;因此,齿轮和轴承缺陷的各种组合也适用。利用该模型以获得系统的动态响应,以便识别和分析内外比赛的局部故障签名以及行星轴承的滚动元件。而且,彻底讨论了内/外圈和球/辊的轴承缺陷频率以及它们的边带。最后,比较了用于不同尺寸的行星轴承故障的系统的频率响应,并测试统计诊断算法以研究故障存在和生长。

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