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Fiber sensors based on fiber gratings

机译:基于光纤光栅的光纤传感器

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摘要

In this paper, we present two different types of pressure sensors including a high-sensitivity lateral pressure sensor and a temperature-independent differential pressure sensor by using fiber Bragg gratings to be encapsulated in a polymer-half-filled metal cylinder. The schematic diagram of lateral pressure sensor is shown in Fig.1 which operating mechanism is based on transferring radial pressure into axial strain to induce Bragg wavelength shift with the sensitivity of 2.2×10−2Mpa−1, which is 10900 times higher than that of using a bare FBG‥ For being used in water-level measurement, a sensitivity of 1.526×10−5 cm−1 is experimentally obtained with a very nice linear relationship between the center-wavelength shift and water level. For a temperature-independent differential pressure sensor, by extending the previous packaged-structure design, a temperature independent differential pressure sensor as shown in Fig.2 is based on two fiber Bragg gratings with the sensitivity of the differential pressure of 5.27×10−1 Mpa−1. This device can also be used measuring differential pressure and temperature simultaneously for applying in liquid level, liquid density or specific gravity detection.
机译:在本文中,我们通过使用纤维布拉格光栅封装在聚合物半填充金属缸中,提供了两种不同类型的压力传感器,包括高灵敏度横向压力传感器和温度无差压传感器。横向压力传感器的示意图如图1所示,哪种操作机构基于将径向压力转移到轴向应变中,以引起BRAGG波长偏移,灵敏度为2.2×10 -2 mpa -1 比使用裸FBG‥在水位测量中使用的10900倍,灵敏度为1.526×10 -5 cm -1通过在中心波长换档和水位之间具有非常好的线性关系来实验地获得。对于温度无关的差压传感器,通过延长先前的封装结构设计,如图2所示的温度独立的差压传感器基于两个光纤布拉格光栅,差压为5.27×10 -1 mpa -1 。该装置还可以使用测量差压和温度,同时施加液位,液体密度或比重检测。

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