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Temperature-independent fiber Bragg grating strain sensor using bimetal cantilever

机译:使用双金属悬臂的温度无关光纤布拉格光栅应变传感器

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摘要

A new packaged fiber Bragg grating using bimetal cantilever beam as the strain agent is presented. The grating is two-point attached on one specific surface of the bimetal beam which consists of two metallic material with different thermal-expansion coefficient. Thereby the grating can be compressed or stretched along with the cantilever beam while temperature varies and temperature compensation can be realized. At the same time, grating chirping can be avoided for the particular attaching method. Experiment results demonstrated that the device is able to automatically compensate temperature induced wavelength shift. The temperature dependence of Bragg wavelength reduced to -0.4 pm/℃ over the temperature range from -20 to 60℃. This fiber grating package technique is cost effective and can be used in strain sensing.
机译:提出了一种以双金属悬臂梁为应变剂的新型光纤布拉格光栅。光栅被两点附着在双金属梁的一个特定表面上,该双金属梁由具有不同热膨胀系数的两种金属材料组成。由此,光栅可以与悬臂梁一起被压缩或拉伸,同时温度变化并且可以实现温度补偿。同时,对于特定的附接方法,可以避免光栅的rp声。实验结果表明,该器件能够自动补偿温度引起的波长偏移。在-20至60℃的温度范围内,布拉格波长的温度依赖性降低至-0.4 pm /℃。这种光纤光栅封装技术具有成本效益,可用于应变传感。

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