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Turbine Engine Disk Rotor Health Monitoring Assessment Using Spin Tests Data

机译:使用旋转测试数据对涡轮发动机盘转子健康状况进行评估

摘要

Detecting rotating engine component malfunctions and structural anomalies is increasingly becoming a crucial key feature that will help boost safety and lower maintenance cost. However, achievement of such technology, which can be referred to as a health monitoring remains somewhat challenging to implement. This is mostly due to presence of scattered loading conditions, crack sizes, component geometry and material properties that hinders the simplicity of imposing such application. Different approaches are being considered to assist in developing other means of health monitoring or nondestructive techniques to detect hidden flaws and mini cracks before any catastrophic events occur. These methods extend further to assess material discontinuities and other defects that have matured to the level where a failure is very likely. This paper is focused on presenting data obtained from spin test experiments of a turbine engine like rotor disk and their correlation to the development of a structural health monitoring and fault detection system. The data collected includes blade tip clearance, blade tip timing measurements and shaft displacements. The experimental results are collected at rotational speeds up to 10,000 Rpm and tests are conducted at the NASA Glenn Research Center s Rotordynamics Laboratory via a high precision spin system. Additionally, this study offers a closer glance at a selective online evaluation of a rotating disk using advanced capacitive, microwave and eddy current sensor technology.
机译:检测旋转中的发动机部件故障和结构异常正变得越来越重要,这将有助于提高安全性并降低维护成本。但是,实现这种技术(可以称为健康监控)仍然很难实施。这主要是由于分散的载荷条件,裂纹尺寸,部件几何形状和材料特性的存在而妨碍了施加此类应用程序的简便性。正在考虑采用不同的方法来协助开发其他健康监测手段或非破坏性技术,以在任何灾难性事件发生之前检测出隐藏的缺陷和微小裂缝。这些方法进一步扩展到评估材料不连续性和其他缺陷,这些缺陷已经成熟到很可能发生故障的程度。本文着重介绍从涡轮发动机(例如转子盘)的旋转测试实验中获得的数据,以及它们与结构健康监测和故障检测系统开发的相关性。收集的数据包括叶尖间隙,叶尖正时测量值和轴位移。以高达10,000 Rpm的转速收集实验结果,并通过高精度旋转系统在NASA格伦研究中心的转子动力学实验室进行测试。此外,这项研究还提供了使用先进的电容,微波和涡流传感器技术对旋转磁盘进行选择性在线评估的详细信息。

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