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Optical fiber sensing of corroded materials with evanescent wave absorption measurements

机译:具有渐逝波吸收测量的腐蚀材料光纤感测

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This research effort is to demonstrate a remote sensing method using optical fibers with a Fourier Transform Infrared (FTIR) interferometer as an evanescent wave spectroscopic technique. In addition to the usual advantages of optical fiber sensors, such as small size and weight, optical fibers can be embedded in aircraft structures in locations where humidity and corrosion can accumulate but cannot be directly observed. A fiber-optic-FTIR experimental setup, including several samples of field corroded materials, has been assembled to spectrally detect Aluminum Hydroxide [Al(OH)_3] which is one of the major components of aluminum corrosion. Absorption spectra of Al(OH)_3 have been collected using an Attenuated Total Reflection (ATR) crystal as a reference spectral signature. The absorption spectra of samples from a simulated corrosion process and from the field corroded structures have been collected and compared with the reference Al(OH)_3 spectra. Chalcogenide optical fibers are used for remote sensing purposes to detect corrosion. Two distinctive absorption peaks, attributable to aluminum hydroxide, are noticed from the simulated corrosion and from the field corroded structures.
机译:此研究工作是展示使用光纤与傅立叶一个遥感方法变换红外(FTIR)干涉仪作为渐逝波的光谱技术。除了光纤传感器,例如,小尺寸和重量的通常优点,光纤可以在湿度和腐蚀可以积累,但不能直接观察到的位置被嵌入在飞机结构。光纤-FTIR实验装置,包括场的几个样品腐蚀的材料,已被组装到光谱检测氢氧化铝[铝(OH)_3],这是铝腐蚀的主要成分之一。的Al的吸收光谱(OH)_3已经使用衰减全反射(ATR)晶体作为参考光谱特征收集。从一个模拟腐蚀过程和从场腐蚀结构的样品的吸收光谱已被收集并与基准的Al(OH)_3光谱进行比较。硫属化物的光学纤维用于遥感目的,以检测腐蚀。两个不同的吸收峰,归属于氢氧化铝,是由模拟的腐蚀和从场腐蚀结构注意到。

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