Tomassini R, Rossi G, Brouckaert J-F
Department of Industrial Engineering, University of Perugia, Via G. Duranti, Perugia, Italy.
Von Karman Institute, Chausee de Waterloo, Rhode Saint Genese, Belgium.
Rev Sci Instrum. 2016 Oct;87(10):102505. doi: 10.1063/1.4964858.
A simultaneous blade tip timing (BTT) and blade tip clearance (BTC) measurement system enables the determination of turbomachinery blade vibrations and ensures the monitoring of the existing running gaps between the blade tip and the casing. This contactless instrumentation presents several advantages compared to the well-known telemetry system with strain gauges, at the cost of a more complex data processing procedure. The probes used can be optical, capacitive, eddy current as well as microwaves, everyone with its dedicated electronics and many existing different signal processing algorithms. Every company working in this field has developed its own processing method and sensor technology. Hence, repeating the same test with different instrumentations, the answer is often different. Moreover, rarely it is possible to achieve reliability for in-service measurements. Developments are focused on innovative instrumentations and a common standard. This paper focuses on the results achieved using a novel magnetoresistive sensor for simultaneous tip timing and tip clearance measurements. The sensor measurement principle is described. The sensitivity to gap variation is investigated. In terms of measurement of vibrations, experimental investigations were performed at the Air Force Institute of Technology (ITWL, Warsaw, Poland) in a real aeroengine and in the von Karman Institute (VKI) R2 compressor rig. The advantages and limitations of the magnetoresistive probe for turbomachinery testing are highlighted.
一种同时进行叶片尖端定时(BTT)和叶片尖端间隙(BTC)测量的系统能够确定涡轮机械叶片的振动,并确保对叶片尖端与机匣之间现有运行间隙的监测。与众所周知的带应变片的遥测系统相比,这种非接触式仪器具有多个优点,但代价是数据处理过程更为复杂。所使用的探头可以是光学的、电容式的、涡流式的以及微波式的,每种探头都有其专用电子设备以及许多现有的不同信号处理算法。该领域的每家公司都开发了自己的处理方法和传感器技术。因此,使用不同仪器重复相同测试时,答案往往不同。此外,对于在役测量,很少能够实现可靠性。目前的发展集中在创新仪器和通用标准上。本文重点介绍了使用新型磁阻传感器同时进行定时和间隙测量所取得的结果。描述了传感器的测量原理。研究了对间隙变化的灵敏度。在振动测量方面,在波兰华沙的空军技术学院(ITWL)的一台实际航空发动机以及冯·卡门研究所(VKI)的R2压气机试验台上进行了实验研究。突出了磁阻探头在涡轮机械测试中的优点和局限性。