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Strain-Independent Temperature Measurements with Surface-Glued Polarization-Maintaining Fiber Bragg Grating Sensor Elements

机译:使用表面粘合保偏光纤布拉格光栅传感器元件的应变独立温度测量

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摘要

A novel technique for strain and temperature decoupling with surface-glued fiber Bragg gratings (FBGs) is presented and applied for strain-independent temperature measurements in a temperature range between −30 °C and 110 °C with uncertainties below 4 °C over the entire measurement range. The influence of temperature-dependent glue-induced transversal forces on the fiber sensor could be eliminated with a sensor element consisting of two FBGs in identical polarization-maintaining fibers that were spliced perpendicular to each other. After aligning and gluing the sensor element with its optical axes parallel and perpendicular to the specimen, the averaged Bragg wavelength shifts of both FBGs were proven to be independent of the glue’s influence and therefore independent of any change in the material characteristics of the glue, such as aging or creeping behavior. For the first time, this methodology enables temperature measurements with surface-attached bare FBGs independently of arbitrary longitudinal and glue-induced strains. This is of great value for all applications that rely on a fully glued sensor design, e.g., in applications with high electromagnetic fields, on rotating parts, or in vacuum for space applications.
机译:提出了一种使用表面粘合光纤布拉格光栅(FBG)进行应变和温度去耦的新技术,并将其应用于与温度无关的温度独立测量,温度范围为−30°C至110°C,整个范围内的不确定度低于4°C测量范围。温度相关的胶水引起的横向力对光纤传感器的影响可以通过一个传感器元件来消除,该传感器元件由两个FBG组成,它们在相同的保偏光纤中相互垂直地拼接。在将传感器元件的光轴平行于并垂直于样品的方向对准并粘合后,两个FBG的平均布拉格波长位移​​被证明与胶水的影响无关,因此与胶水的材料特性的任何变化无关,例如作为老化或蠕变行为。该方法首次实现了使用表面附着的裸露FBG进行温度测量,而不受任意纵向应变和胶粘应变的影响。对于所有依靠完全粘合的传感器设计的应用来说,这是非常有价值的,例如,在具有高电磁场的应用,在旋转零件上或在真空中用于太空应用。

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