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Phenomenon-model-based AM-FM vibration mechanism of faulty spur gear

机译:基于现象模型的正齿轮故障AM-FM振动机理

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Vibration responses of faulty gear contain modulation components that are commonly used as the indicators to detect the fault. The modulation mechanism has not been revealed clearly, especially the sideband distribution of amplitude modulation and frequency modulation. Aiming at the vibration modulation mechanism of fault gear, the gear meshing stiffness with frequency modulation components is deduced considering the actual speed fluctuation, as well as its influence on vibration responses. A series of phenomenon models of gear pair are built to research the sideband distribution features of vibration responses related to different types of gear faults. Both the steady-type and impact-type gear faults are proved to generate asymmetric amplitude-frequency modulation sidebands around harmonics of the meshing frequency. The marked difference lies in that the steady-type fault features distribute within a finite band while the impact-type fault features cover the entire frequency range and induce spurious resonance peaks. Sidebands with both amplitude and frequency modulations are wider than those with only amplitude modulation, and the product of two groups of frequency modulation components is proved to bring in amplitude modulation components. The phenomenon models of gear vibration responses contribute a deeper understanding of modulation mechanism of faulty spur gear, and the obtained sideband distribution features of amplitude-frequency modulation are an effective aid for gear fault diagnose.
机译:故障齿轮的振动响应包含调制分量,这些调制分量通常用作检测故障的指标。尚未清楚揭示调制机制,特别是振幅调制和频率调制的边带分布。针对故障齿轮的振动调制机理,考虑实际速度波动及其对振动响应的影响,推导了齿轮与频率调制部件的啮合刚度。建立了一系列齿轮副现象模型,研究与不同类型齿轮故障有关的振动响应的边带分布特征。稳定型和冲击型齿轮故障均被证明会在啮合频率的谐波周围产生不对称的幅频调制边带。明显的区别在于,稳定型故障特征分布在有限的频带内,而冲击型故障特征则覆盖整个频率范围,并引起寄生共振峰。具有幅度和频率调制的边带比仅具有幅度调制的边带宽,并且事实证明两组频率调制分量的乘积引入了幅度调制分量。齿轮振动响应的现象模型有助于对正齿轮故障的调制机理有更深入的了解,所获得的振幅-频率调制的边带分布特征对齿轮故障的诊断是有效的。

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