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The mechanical strength of fiber Bragg gratings under controlled UV laser conditions

机译:受控紫外线激光条件下光纤布拉格光栅的机械强度

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Several factors influencing the mechanical strength of fiber Bragg grating (FBG) sensors during their fabrication were examined and FBG sensors were made under controlled UV laser conditions. A chemical stripping technique to remove the acrylate coating of the fiber and H-2 loading treatment to increase the photosensitivity of the optical fibers at a wavelength range of 240-250 nm showed negligible impact on the mechanical strength of the fiber optic sensor. The UV laser beam width exposed on the fiber was controlled up to 60 mu m so as to reduce the damaged areas induced from laser exposure. Also the pulse fluence and the total dose of a pulsed KrF excimer laser were varied in order to investigate their influence on the mechanical strength. Finally FBG sensors with different reflectivities were fabricated with only slight strength degradation such that they could be used in a structure with 2.54% measurement range of strain.
机译:研究了影响光纤布拉格光栅(FBG)传感器制造过程中机械强度的几个因素,并在受控的UV激光条件下制造了FBG传感器。化学剥离技术去除纤维的丙烯酸酯涂层并进行H-2加载处理以增加光纤在240-250 nm波长范围内的光敏性,对光纤传感器的机械强度影响可忽略不计。光纤上暴露的紫外激光束宽度控制在60微米以内,以减少激光暴露引起的损坏区域。为了研究它们对机械强度的影响,还改变了脉冲能量密度和脉冲KrF准分子激光的总剂量。最终,制造出具有不同反射率的FBG传感器,强度仅略有下降,因此可以在应变测量范围为2.54%的结构中使用。

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