基于磁致伸缩复合材料的增敏光纤磁场传感器设计

Shuo Zhang, Jianben Liu, Jun Peng, Shuhai Jia, Jiaming Bian
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引用次数: 1

摘要

本文提出了一种制作简单、灵敏度高、测量范围宽的磁场传感器。该传感器由光纤布拉格光栅、灵敏度增强结构(SES)、磁致伸缩颗粒和环氧树脂基体组成。在光栅两侧粘贴长度为5mm的金属管作为SES,并在金属管上盖上凹槽。用磁致伸缩粒子和树脂制成的基体包覆金属管光纤光栅。在基体固化过程中,施加平行于纤维的200mT均匀磁场,使磁致伸缩颗粒的取向恒定。它还可以使粒子具有均匀的空间分布。首先,通过对比三种不同树脂不带金属管制作的传感器与直接将FBG粘接在Terfenol-D棒上制作的传感器的性能,发现使用环氧晶体粘合剂制作的传感器灵敏度最高,达到0.58 pm/mT。其次,对基于环氧结晶胶粘剂的传感器进行了评价。与无SES直接粘接的传感器相比,灵敏度提高了5.17倍,达到3.58 pm/mT,测量范围从0 mT扩大到226 mT。
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Design of a sensitivity-enhanced optical fiber magnetic field sensor based on magnetostrictive composite
In this paper, a magnetic field sensor with simple fabrication, high sensitivity and wide measurement range is proposed. The sensor consists of fiber Bragg grating, sensitivity enhancement structure (SES), magnetostrictive particles and epoxy resin matrix. Metal tube with length of 5 mm is glued onto both sides of the grating as SES, and the mental tube is covered with grooves. The FBG with mental tubes is coated with the matrix made of magnetostrictive particles and resin. During the curing process of matrix, a uniform magnetic field with 200mT and parallel to the fiber is applied to make the orientation of magnetostrictive particles constant. It also can make particles have uniform spatial distribution. Firstly, by comparing the performances of sensors made of three different resin without mental tube with the sensor made by gluing FBG onto Terfenol-D rod directly, it is found that the sensor with epoxy crystal adhesive has the highest sensitivity reaching 0.58 pm/mT. Secondly the sensor based on epoxy crystal adhesive with SES is evaluated. Compared with the sensor without SES and gluing diretly, the sensitivity increases 5.17 times to 3.58 pm/mT and the measurement expands ranging from 0 mT to 226 mT.
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