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Gearbox Tooth Cut Fault Diagnostics Using Acoustic Emission and Vibration Sensors — A Comparative Study

机译:使用声发射和振动传感器的齿轮箱齿切割故障诊断—比较研究

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In recent years, acoustic emission (AE) sensors and AE-based techniques have been developed and tested for gearbox fault diagnosis. In general, AE-based techniques require much higher sampling rates than vibration analysis-based techniques for gearbox fault diagnosis. Therefore, it is questionable whether an AE-based technique would give a better or at least the same performance as the vibration analysis-based techniques using the same sampling rate. To answer the question, this paper presents a comparative study for gearbox tooth damage level diagnostics using AE and vibration measurements, the first known attempt to compare the gearbox fault diagnostic performance of AE- and vibration analysis-based approaches using the same sampling rate. Partial tooth cut faults are seeded in a gearbox test rig and experimentally tested in a laboratory. Results have shown that the AE-based approach has the potential to differentiate gear tooth damage levels in comparison with the vibration-based approach. While vibration signals are easily affected by mechanical resonance, the AE signals show more stable performance.
机译:近年来,已开发出声发射(AE)传感器和基于AE的技术,并进行了变速箱故障诊断的测试。通常,用于变速箱故障诊断的基于AE的技术比基于振动分析的技术需要更高的采样率。因此,与使用相同采样率的基于振动分析的技术相比,基于AE的技术是否会提供更好的性能或至少具有相同的性能是令人怀疑的。为了回答这个问题,本文提出了使用自动变速箱和振动测量进行齿轮箱齿轮损伤水平诊断的比较研究,这是首次尝试比较使用相同采样率的自动变速箱和基于振动分析的齿轮箱故障诊断性能。局部断齿故障被植入齿轮箱测试设备中,并在实验室中进行了实验测试。结果表明,与基于振动的方法相比,基于AE的方法具有区分齿轮损坏程度的潜力。虽然振动信号容易受到机械共振的影响,但AE信号显示出更稳定的性能。

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