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Fault Diagnosis for a Multistage Planetary Gear Set Using Model-Based Simulation and Experimental Investigation

机译:使用基于模型的模拟和实验调查的多级行星齿轮组故障诊断

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摘要

The gear damage will induce modulation effects in vibration signals. A thorough analysis of modulation sidebands spectral structure is necessary for fault diagnosis of planetary gear set. However, the spectral characteristics are complicated in practice, especially for a multistage planetary gear set which contains close frequency components. In this study, a coupled lateral and torsional dynamic model is established to predict the modulation sidebands of a two-stage compound planetary gear set. An improved potential energy method is used to calculate the time-varying mesh stiffness of each gear pair, and the influence of crack propagation on the mesh stiffness is analyzed. The simulated signals of the gear set are obtained by using Runge-Kutta numerical analysis method. Meanwhile, the sidebands characteristics are summarized to exhibit the modulation effects caused by sun gear damage. At the end, the experimental signals collected from an industrial SD16 planetary gearbox are analyzed to verify the theoretical derivations. The results of experiment agree well with the simulated analysis.
机译:齿轮损坏将引起振动信号的调制效果。对行星齿轮组故障诊断需要彻底分析调制边带谱结构。然而,在实践中,光谱特性是复杂的,特别是对于包含近频分量的多级行星齿轮组。在该研究中,建立了耦合的横向和扭转动态模型以预测两级复合行星齿轮组的调制边带。改进的电位能量方法用于计算每个齿轮对的时变网格刚度,分析了裂纹传播对网状刚度的影响。通过使用跳动-Kutta数值分析方法获得齿轮组的模拟信号。同时,总结了边带特性以表现出由太阳齿轮损坏引起的调制效果。最后,分析了从工业SD16行星齿轮箱收集的实验信号,以验证理论衍生。实验结果与模拟分析很好。

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