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A comparative study of the effectiveness of vibration and acoustic emission in diagnosing a defective bearing in a planetry gearbox

机译:振动和声发射在行星齿轮箱中的轴承故障诊断中的有效性比较研究

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摘要

Whilst vibration analysis of planetary gearbox faults is relatively well established, the application of Acoustic Emission (AE) to this field is still in its infancy. For planetary-type gearboxes it is more challenging to diagnose bearing faults due to the dynamically changing transmission paths which contribute to masking the vibration signature of interest.The present study is aimed to reduce the effect of background noise whilst extracting the fault feature from AE and vibration signatures. This has been achieved through developing of internal AE sensor for helicopter transmission system. In addition, series of signal processing procedure has been developed to improved detection of incipient damage. Three signal processing techniques including an adaptive filter, spectral kurtosis and envelope analysis, were applied to AE and vibration data acquired from a simplified planetary gearbox test rig with a seeded bearing defect. The results show that AE identified the defect earlier than vibration analysis irrespective of the tortuous transmission path
机译:尽管行星齿轮箱故障的振动分析已经相对完善,但声发射(AE)在该领域的应用仍处于起步阶段。对于行星齿轮箱,由于动态变化的传动路径有助于掩盖感兴趣的振动特征,因此要诊断轴承故障更具挑战性。本研究旨在减少背景噪声的影响,同时从AE和AE中提取故障特征振动信号。这是通过开发用于直升机传输系统的内部AE传感器实现的。另外,已经开发了一系列信号处理程序以改善对初期损坏的检测。三种信号处理技术(包括自适应滤波器,光谱峰度和包络分析)应用于AE和从简化的行星齿轮箱测试台获得的,带有轴承缺陷的振动数据。结果表明,不管曲折的传输路径如何,AE都比振动分析更早地识别出缺陷。

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