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燃气轮机热端部件的无损检测/结构健康监测技术综述。

A Review of NDT/Structural Health Monitoring Techniques for Hot Gas Components in Gas Turbines.

机构信息

Materials Research Centre, Department of Mechanical Engineering, University of Bath, Bath BA2 7AY, UK.

出版信息

Sensors (Basel). 2019 Feb 9;19(3):711. doi: 10.3390/s19030711.

Abstract

The need for non-destructive testing/structural health monitoring (SHM) is becoming increasingly important for gas turbine manufacturers. Incipient cracks have to be detected before catastrophic events occur. With respect to condition-based maintenance, the complex and expensive parts should be used as long as their performance or integrity is not compromised. In this study, the main failure modes of turbines are reported. In particular, we focus on the turbine blades, turbine vanes and the transition ducts of the combustion chambers. The existing monitoring techniques for these components, with their own particular advantages and disadvantages, are summarised in this review. In addition to the vibrational approach, tip timing technology is the most used technique for blade monitoring. Several sensor types are appropriate for the extreme conditions in a gas turbine, but besides tip timing, other technologies are also very promising for future NDT/SHM applications. For static parts, like turbine vanes and the transition ducts of the combustion chambers, different monitoring possibilities are identified and discussed.

摘要

燃气轮机制造商越来越需要进行无损检测/结构健康监测(SHM)。必须在灾难性事件发生之前检测到初始裂纹。就基于状态的维护而言,只要复杂和昂贵的部件的性能或完整性不受影响,就应该继续使用。在本研究中,报告了涡轮机的主要失效模式。特别是,我们专注于涡轮叶片、涡轮导向叶片和燃烧室的过渡段。对这些部件的现有监测技术,以及各自的优缺点,在本综述中进行了总结。除了振动方法外,叶尖定时技术是监测叶片最常用的技术。有几种传感器类型适用于燃气轮机中的极端条件,但除了叶尖定时技术外,其他技术对于未来的无损检测/SHM 应用也非常有前途。对于像涡轮导向叶片和燃烧室的过渡段这样的静态部件,已经确定并讨论了不同的监测可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e61b/6386850/b42781124cc1/sensors-19-00711-g001.jpg

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