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Mach-Zehnder optical fiber interferometers for the detection of ultrasound

机译:Mach-Zehnder光纤干涉器用于检测超声波

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Ultrasonic Lamb waves have been extensively investigated for non-destructive testing of materials. Embedded or surface bonded optical fiber, acting as the signal arm of a Mach-Zehnder interferometer, is one method previously utilised to detect the Lamb waves. Optical fibers therefore have potential as permanent sensors for structural monitoring of damage and defects in materials. A greater understanding of the ultrasound interaction with the optical fiber sensor will bring application closer. In order to probe this interaction we built a two channel interferometer allowing ultrasound travelling through a material to be monitored simultaneously by a Mach-Zehnder interferometer and also a Michelson interferometer. The Michelson interferometer allows a non-contact measurement to be made of the absolute surface displacement associated with an ultrasonic Lamb wave. Comparison of the ultrasound signals detected by the two different interferometers provides a greater insight into the detection mechanism and sensitivity of the Mach-Zehnder interferometer. The work is then extended to look at embedded fibers in composite materials and damage detection
机译:超声羔羊波已经广泛研究了对材料的非破坏性测试。嵌入或表面粘合的光纤,作为Mach-Zehnder干涉仪的信号臂,是先前用于检测羊羔波的一种方法。因此,光纤具有永久性传感器,用于结构监测材料的损坏和缺陷。对与光纤传感器的超声相互作用的更大了解将带来更近的应用。为了探测这种相互作用,我们建立了两个通道干涉仪,允许通过Mach-Zehnder干涉仪和迈克尔逊干涉仪同时监测超声波行驶。迈克尔逊干涉仪允许非接触式测量来由与超声羔羊波相关的绝对表面位移制成。两种不同的干涉仪检测到的超声信号的比较提供了更大的洞察Mach-Zehnder干涉仪的检测机构和灵敏度。然后延伸工作以查看复合材料中的嵌入式纤维和损坏检测

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