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Planetary bearing defect detection in a commercial helicopter main gearbox with vibration and acoustic emission

机译:带有振动和声发射的商用直升机主变速箱中的行星轴承缺陷检测

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摘要

Helicopter gearboxes significantly differ from other transmission types and exhibit unique behaviours that reduce the effectiveness of traditional fault diagnostics methods. In addition, due to lack of redundancy, helicopter transmission failure can lead to catastrophic accidents. Bearing faults in helicopter gearboxes are difficult to discriminate due to the low signal-to-noise ratio in the presence of gear vibration. In addition, the vibration response from the planet gear bearings must be transmitted via a time-varying path through the ring gear to externally mounted accelerometers, which cause yet further bearing vibration signal suppression. This research programme has resulted in the successful proof of concept of a broadband wireless transmission sensor that incorporates power scavenging while operating within a helicopter gearbox. In addition, this article investigates the application of signal separation techniques in detection of bearing faults within the epicyclic module of a large helicopter (CS-29) main gearbox using vibration and acoustic emissions. It compares their effectiveness for various operating conditions. Three signal processing techniques, including an adaptive filter, spectral kurtosis and envelope analysis, were combined for this investigation. In addition, this research discusses the feasibility of using acoustic emission for helicopter gearbox monitoring.
机译:直升机齿轮箱与其他变速箱类型明显不同,并且表现出独特的性能,从而降低了传统故障诊断方法的有效性。另外,由于缺乏冗余,直升机的传输故障可能导致灾难性事故。由于存在齿轮振动,因此信噪比低,因此很难区分直升机齿轮箱中的轴承故障。此外,行星齿轮轴承的振动响应必须通过随时间变化的路径通过齿圈传递到外部安装的加速度计,这会进一步抑制轴承振动信号。这项研究计划成功地证明了宽带无线传输传感器的概念,该传感器在直升机变速箱内运行时具有功率节省功能。此外,本文还研究了信号分离技术在利用振动和声发射检测大型直升机(CS-29)主变速箱的周转模块内的轴承故障中的应用。它比较了它们在各种运行条件下的有效性。这项研究结合了三种信号处理技术,包括自适应滤波器,光谱峰度和包络分析。此外,本研究还讨论了使用声发射进行直升机齿轮箱监控的可行性。

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