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Fiber optic strain measurement for machine monitoring

机译:光纤应变测量,用于机器监控

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摘要

Monitoring machines during operation is an important issue in measurement engineering. The usual approach to monitoring specific machine components is using strain gauges. Strain gauges, however, may sometimes not be used if conditions are harsh or installation space is limited. Fiber optic sensors seem to be an alternative here, but dynamic health monitoring has been difficult so far. The focus of this field study is to measure vibration characteristics of machine parts during operation using fiber optic sensors with the objective of early damage detection. If that was possible, downtime and maintenance costs could be minimized. Therefore a field test for dynamic fiber optic strain measurement on a roller bearing was carried out. The test setup consisted of the bearing built into a gear test stand and equipped with an array of fiber Bragg grating sensors. Fifteen fiber sensors were interrogated with a sample rate of 1 kHz and the vibration pattern was extracted. The radial load distribution was measured with high spatial resolution and a high degree of compliance with simulation data was found. The findings suggest that fiber optic health monitoring for machine components is feasible and reasonable. Especially with the help of distributed sensing on various components extensive health monitoring on complex technical systems is possible.
机译:在操作过程中监视机器是测量工程中的重要问题。监视特定机器组件的常用方法是使用应变仪。但是,如果条件恶劣或安装空间有限,有时可能不使用应变计。光纤传感器在这里似乎是一种替代方法,但是到目前为止,动态健康状况监视一直很困难。这项现场研究的重点是使用光纤传感器测量机器零件在运行过程中的振动特性,以及早发现损坏。如果可能的话,停机时间和维护成本可以降到最低。因此,进行了在滚动轴承上进行动态光纤应变测量的现场测试。测试设置包括内置在齿轮测试台中的轴承,并配备了一系列光纤布拉格光栅传感器。询问了15个光纤传感器,采样率为1 kHz,并提取了振动模式。以高空间分辨率测量径向载荷分布,发现高度符合仿真数据。研究结果表明,对机器部件进行光纤健康监测是可行和合理的。尤其是借助对各种组件的分布式传感,可以对复杂的技术系统进行广泛的运行状况监视。

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