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Detection and Localization of Tooth Breakage Fault on Wind Turbine Planetary Gear System considering Gear Manufacturing Errors

机译:考虑齿轮制造误差的风力涡轮行星齿轮系统的断齿故障检测与定位

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Sidebands of vibration spectrum are sensitive to the fault degree and have been proved to be useful for tooth fault detection and localization. However, the amplitude and frequency modulation due to manufacturing errors (which are inevitable in actual planetary gear system) lead to much more complex sidebands. Thus, in the paper, a lumped parameter model for a typical planetary gear system with various types of errors is established. In the model, the influences of tooth faults on time-varying mesh stiffness and tooth impact force are derived analytically. Numerical methods are then utilized to obtain the response spectra of the system with tooth faults with and without errors. Three system components (including sun, planet, and ring gears) with tooth faults are considered in the discussion, respectively. Through detailed comparisons of spectral sidebands, fault characteristic frequencies of the system are acquired. Dynamic experiments on a planetary gear-box test rig are carried out to verify the simulation results and these results are of great significances for the detection and localization of tooth faults in wind turbines.
机译:振动谱的边带对故障程度敏感,并已被证明可用于牙齿故障的检测和定位。但是,由于制造误差(在实际的行星齿轮系统中不可避免)造成的振幅和频率调制会导致更为复杂的边带。因此,在本文中,建立了具有各种类型误差的典型行星齿轮系统的集总参数模型。在模型中,分析得出了断齿对时变网格刚度和冲击力的影响。然后利用数值方法获得带有或不带有误差的牙齿故障的系统的响应谱。讨论中分别考虑了三个系统组件(包括太阳齿轮,行星齿轮和齿圈)的故障。通过对频谱边带的详细比较,可以获得系统的故障特征频率。在行星齿轮箱试验台上进行了动态实验,以验证仿真结果,这些结果对于检测和定位风力涡轮机中的齿故障具有重要意义。

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