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DESIGN AND PERFORMANCE OF A FIBER BRAGG GRATING DISPLACEMENT SENSOR FOR MEASUREMENT OF MOVEMENT

机译:用于测量运动的光纤布拉格光栅位移传感器的设计和性能

摘要

A displacement sensor based on the underlying principle that when the outer surface of a quartz fiber (fiber optic cable) is etched to form a series of regularly spaced lines (a Fiber Bragg grating), laser light of a wavelength matching the spacing of the lines which enters one end of the fiber will be preferentially reflected. If the fiber is deformed, causing the line spacing to change, the wavelength of the reflected light will also change. This shift can be accurately measured and so can be related to the magnitude of the deformation of the fiber. This fiber is potted with epoxy resin in a narrow tube fabricated from a shape-memory alloy (SMA), and pre-formed into a curved shape. This not only protects the quartz fiber from direct contact with other objects and excessive bending, but also causes it to deform in a predictable fashion, thereby generating a reproducible response to displacement. Due to the high elastic behavior of the SMA tube, a displacement sensor with a gage length of 40 mm can measure displacements in excess of 3 mm.
机译:基于以下原理的位移传感器:当蚀刻石英纤维(光缆)的外表面以形成一系列规则排列的线(光纤布拉格光栅)时,波长与线间距匹配的激光进入光纤一端的光会被优先反射。如果光纤变形,导致线距改变,则反射光的波长也会改变。该偏移可以被精确地测量,并且因此可以与纤维的变形的大小有关。该纤维在由形状记忆合金(SMA)制成的细管中用环氧树脂灌封,并预制成弯曲形状。这不仅保护石英纤维免于与其他物体直接接触和过度弯曲,而且使石英纤维以可预测的方式变形,从而对位移产生可再现的响应。由于SMA管具有很高的弹性,标距长度为40 mm的位移传感器可以测量超过3 mm的位移。

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