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Effects of tooth-crack-induced mesh stiffness on fault signals of a planetary gear train

机译:齿裂引起的网格刚度对行星齿轮系故障信号的影响

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Abstract: The early fault of tooth crack in a planetary gearbox is difficult to be detected duo to its weak yet complex effects on the system's vibration signals. In order to identify fault signals aroused from small tooth crack of the sun gear in a planetary gear train, a lateral-rotational-coupled nonlinear dynamic model that incorporates the tooth-crack-induced time-varying mesh stiffness is proposed. A three-dimensional finite element model of gear pair is established to formulate the mesh stiffness of the gear pair with and without tooth crack. Based on the proposed nonlinear dynamic model, the vibration signals of a planetary gear system in both healthy and tooth-cracked conditions are predicted. Though a distinct reduction in the time-varying mesh stiffness of the sun-planet gear pair can be observed after introducing the effects of tooth crack, the time-domain vibration signals for both healthy and fault conditions are almost the same. However, the vibration signals in frequency-domain under two conditions are quite different in that multiplicities of sidebands spaced by characteristic frequency of the sun gear around the harmonics of mesh frequencies can be observed in the fault condition. Hence, from the perspective of fault diagnosis, the dynamic-model-based frequency spectra can be used to detect the early fault of tooth crack in a planetary gear train.
机译:摘要:行星齿轮箱中的牙齿裂缝的早期错是难以检测到其对系统振动信号的弱而复杂的影响。为了识别从行星齿轮系中的太阳齿轮的小齿纹突出的故障信号,提出了一种包含齿裂引起的时变网刚度的横向旋转耦合的非线性动态模型。建立齿轮对的三维有限元模型,以配制齿轮副的网状刚度,无齿裂纹。基于所提出的非线性动态模型,预测了健康和牙齿破裂条件的行星齿轮系统的振动信号。尽管在引入牙齿裂纹的效果之后可以观察到太阳行星齿轮对的时变网刚度的不同的减少,但是对于健康和故障条件的时域振动信号几乎是相同的。然而,在两个条件下的频域中的振动信号在故障条件下可以观察到通过围绕网状频率的谐波的谐波的特征频率间隔开的边带的多个边带。因此,从故障诊断的角度来看,基于动态模型的频谱可用于检测行星齿轮系中的牙齿裂纹的早期错误。

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