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Turbine Engine Health/Maintenance Status Monitoring with Use of Phase-Discrete Method of Blade Vibration Monitoring

机译:涡轮发动机健康/维护状态监测采用刀片振动监测的相离散方法

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The intended aim of the paper was to present a short review of more than 15 years of experience of ITWL in the field of applying the signal of actual rotational speed (aperiodic and oscillation components thereof) to the expert diagnosing of aero-engines, including identification of low-and high-cycle fatigue (LCF, HCF) of critical structural members. What has been presented is some essential metrological bearings of the non-contact technique of measuring the engine's rpm with some flexible key phasors (i.e. vibrating compressor/turbine blades). Also, methods of numerical analysis of measuring signals, in use nowadays, have been discussed. With the jet engine of the SO-3 type (in use on the TS-11 "Iskra" combat trainer) as an example, are discussed algorithms of both the identification of disadvantageous aeromechanical effects (energy state of the engine - i.e. the source of accelerated HCF wear of structural components) and the early detection of symptoms of fatigue failures to compressor blades and the bearing system. The discussed problems have been illustrated with examples selected as to emphasise practicalities of applying a new source of diagnostic information to "actively" control the process of fatigue wear (HCF + LCF) of engine components and to forecast the engine health/maintenance status.
机译:本文的预期目的是在将实际转速(非周期性和振荡组分的振动组件及其振荡组件的信号)应用于Aero-yigines的专家诊断,包括对ITWL超过15年的ITWL经验的简短审查。包括识别临界结构构件的低和高循环疲劳(LCF,HCF)。已经提出的是使用一些柔性键相量测量发动机RPM的非接触技术的一些基本计量轴承(即振动压缩机/涡轮叶片)。此外,已经讨论了现在使用的测量信号的数值分析方法。用SO-3型的喷射发动机(在TS-11“ISKRA”战斗训练器上)作为示例,探讨了不利的气球机械效应的识别算法(发动机的能量状态 - 即加速HCF结构组分的磨损),以及早期检测压缩机叶片和轴承系统的疲劳故障症状。已经用所选择的示例说明了所讨论的问题,以强调将新诊断信息的新来源应用于“主动”控制发动机部件的疲劳磨损(HCF + LCF)的过程并预测发动机健康/维护状态。

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