Radiation impact on strain transfer efficiency of bonded FBGs

Chloé Landreau, J. Vidalot, A. Morana, Nicolas Ponthus, Thomas Le Gall, S. Girard, Jacques Charvin, E. Marin
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Abstract

Radiation impact on the strain transfer for a bonded fiber Bragg grating (FBG) has been investigated. The main goal of this preliminary study is to evaluate which adhesive and which fiber are the most appropriate to design a very sensitive strain sensor able to operate in nuclear environment. We performed static and dynamic experiments on different kinds of adhesives and different optical fibers, before and after a 1 MGy(SiO2) X-ray irradiation. The results reveal that the FBG strain sensors can be as much sensitive as classic strain-gauges and that the radiation effects on adhesives can have a positive impact on the strain transfer efficiency.
辐射对键合fbg应变传递效率的影响
研究了辐射对键合光纤布拉格光栅(FBG)应变传递的影响。本初步研究的主要目的是评估哪种胶粘剂和哪种纤维最适合设计能够在核环境中工作的非常敏感的应变传感器。在1 MGy(SiO2) x射线照射前后,对不同种类的胶粘剂和不同类型的光纤进行了静态和动态实验。结果表明,光纤光栅应变传感器具有与传统应变片相同的灵敏度,并且胶粘剂的辐射效应对应变传递效率有积极的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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