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Temperature Dependence of Glue-Induced Birefringence in Surface-Attached FBG Strain Sensors

机译:表面贴装的FBG应变传感器中胶水引起的双折射的温度依赖性

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The accuracy of surface attached fiber Bragg gratings (FBG) as strain sensors is affected by glue-induced birefringence, especially for applications in a large temperature range. In this study, we investigated the effects of the gluing technique with a new approach using FBGs in PM fibers that were azimuthally aligned relatively to the surface they were attached to. With this methodology, the glue-induced birefringence induced during the thermal curing process and its temperature dependence was investigated in the range of to . The used adhesive showed visco-elastic behavior up to . The glue-induced birefringence increased with decreasing temperature reaching a value in the order of at . Measurable reversible stress relaxation processes took place, even at low temperatures below the glue's glass transition temperature, which made the glue-induced birefringence dependent on time, temperature, and its prehistory. The same amount of glue-induced birefringence must be expected when FBGs in single mode fibers with the same gluing technique are used, and have to be taken into account in highly accurate measurements.
机译:表面附着的光纤布拉格光栅(FBG)作为应变传感器的准确性受胶水诱导的双折射的影响,特别是在较大温度范围内的应用中。在这项研究中,我们研究了一种新方法,即使用FBG在PM光纤中进行粘合的效果,这些光纤相对于其所附着的表面相对于方位角对齐。用这种方法,研究了在热固化过程中由胶引起的双折射及其与温度的关系,温度范围为到。用过的粘合剂显示出高达的粘弹性。胶引起的双折射随着温度的降低而增加,达到的温度约为。即使在低于胶水玻璃化转变温度的低温下,也发生了可测量的可逆应力松弛过程,这使得胶水引起的双折射取决于时间,温度及其史前史。当使用具有相同粘合技术的单模光纤中的FBG时,必须期望产生相同数量的粘合引起的双折射,并且在高度精确的测量中必须考虑到这一点。

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