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Investigation of a Moire Based Crack Detection Technique for Propulsion Health Monitoring

机译:基于云纹的推进力健康监测裂纹检测技术研究

摘要

The development of techniques for the health monitoring of the rotating components in gas turbine engines is of major interest to NASA s Aviation Safety Program. As part of this on-going effort several experiments utilizing a novel optical Moir based concept along with external blade tip clearance and shaft displacement instrumentation were conducted on a simulated turbine engine disk as a means of demonstrating a potential optical crack detection technique. A Moir pattern results from the overlap of two repetitive patterns with slightly different periods. With this technique, it is possible to detect very small differences in spacing and hence radial growth in a rotating disk due to a flaw such as a crack. The experiment involved etching a circular reference pattern on a subscale engine disk that had a 50.8 mm (2 in.) long notch machined into it to simulate a crack. The disk was operated at speeds up to 12 000 rpm and the Moir pattern due to the shift with respect to the reference pattern was monitored as a means of detecting the radial growth of the disk due to the defect. In addition, blade displacement data were acquired using external blade tip clearance and shaft displacement sensors as a means of confirming the data obtained from the optical technique. The results of the crack detection experiments and its associated analysis are presented in this paper.
机译:美国国家航空航天局的航空安全计划对开发燃气涡轮发动机中旋转部件的健康状况进行监控的技术尤为重要。作为正在进行的工作的一部分,在一个模拟的涡轮发动机盘上进行了一些实验,这些实验使用了基于光学摩尔纹的新颖概念以及外部叶片尖端间隙和轴位移仪表,以证明潜在的光学裂纹检测技术。莫尔图案是由于两个重复图案的重叠(周期略有不同)导致的。利用这种技术,有可能检测到很小的间距差异,并因此检测出由于诸如裂纹之类的缺陷而导致的旋转盘中的径向增长。实验涉及在子刻度发动机盘上刻蚀圆形参考图案,该刻度盘上刻有50.8毫米(2英寸)长的槽口以模拟裂纹。盘以高达12000rpm的速度运行,并且由于相对于参考图案的偏移而引起的莫尔图案被监测,作为检测由于缺陷引起的盘的径向生长的手段。另外,使用外部叶片尖端间隙和轴位移传感器获取叶片位移数据,作为确认从光学技术获得的数据的手段。本文介绍了裂纹检测实验的结果及其相关分析。

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