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Non-Contact Damage Detection under Operational Conditions with Multipoint Laservibrometry

机译:多点激光振动法在运行条件下的非接触式损伤检测

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摘要

Scanning laser–Doppler vibrometry (SLDV) can localize and visualize damages in mechanical structures. In order to enable scanning, it is necessary to repeat the vibration. Therefore, this technique is not suited to detect emerging hazards in working machinery that change the vibration behavior. A common technique for such cases is monitoring the vibration excited by machine operation with accelerometers. This technique requires mechanical coupling between sensors and the measurement object, which influences the high-frequency vibration responses. However, in the low-frequency range, local damages do not shift resonances or distort operational deflection shapes (ODS) significantly. These alterations in the vibration behavior are tiny and hard to detect. This paper shows that multipoint laservibrometry (MPV) with laser excitation can measure these effects efficiently, and it further demonstrates that damages influence ODSs at frequencies above 20 kHz much stronger than at frequencies below 20 kHz. In addition, ODS-based damage indices are discussed; these are highly sensitive to minute visible changes of the ODSs. In order to enhance the sensitivity of hazard detection, the response vector assurance criterion value is computed and evaluated during operation. The capabilities and limitations of the methodology on the example of a cantilever with manually emerging damage are demonstrated.
机译:扫描激光多普勒振动法(SLDV)可以定位并可视化机械结构中的损坏。为了能够进行扫描,必须重复振动。因此,该技术不适用于检测工作机械中改变振动行为的新出现的危险。在这种情况下,一种常见的技术是使用加速度计监视机器运行所激发的振动。此技术需要传感器与测量对象之间的机械耦合,这会影响高频振动响应。但是,在低频范围内,局部损坏不会使共振发生偏移或使操作偏转形状(ODS)明显变形。振动行为的这些变化很小,很难检测到。本文表明,采用激光激发的多点激光振动测量法(MPV)可以有效地测量这些影响,并且进一步证明,损害在20 kHz以上的频率对ODS的影响要强于在20 kHz以下的频率。此外,还讨论了基于消耗臭氧层物质的损害指数;这些对ODS的细微可见变化非常敏感。为了提高危害检测的灵敏度,在操作过程中计算和评估响应矢量保证标准值。演示了方法的能力和局限性,以带有手动出现的损伤的悬臂为例。

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