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Simultaneous Measurement of Temperature and Mechanical Strain Using a Fiber Bragg Grating Sensor

机译:使用光纤布拉格光栅传感器同时测量温度和机械应变

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摘要

Based on the shift of the Bragg wavelength, fiber Bragg grating (FBG) sensors have been employed to measure a variety of physical parameters such as stress, strain, displacement, temperature, vibration and pressure. In this work, a simple and easy way to be implemented FBG sensing methodology was proposed to measure the temperature and strain simultaneously. Half of the FBG was bonded on the host structure, while the other half of the FBG was left free. The host structure was an aluminum test specimen with dimensions of 20 × 3.8 × 0.5 . As the host structure subjected to mechanical and thermal loadings, the Bragg wavelengths reflected from the bonded and unbonded FBGs are different. Theoretical predictions of the Bragg wavelength shifts of the bonded and unbonded FBGs were presented. Utilizing the Bragg wavelength shift of unbonded FBG, the temperature can be determined and is independent of mechanical strain. The Bragg wavelength shift of the bonded FBG allows the determination of the mechanical strain. The temperature measured by FBG sensor was compared with the result from a thermocouple, while the mechanical strain was validated with the theoretical prediction. Good agreement between the experimental measurement and theoretical prediction demonstrates that temperature-strain discrimination can be realized using the proposed method with one single FBG sensor.
机译:基于布拉格波长的偏移,已经采用光纤布拉格光栅(FBG)传感器来测量各种物理参数,例如应力,应变,位移,温度,振动和压力。在这项工作中,提出了一种简单且简单的方法,以实现FBG感测方法,以便同时测量温度和应变。 FBG的一半键在宿主结构上键合,而FBG的其他一半是自由的。宿主结构是铝制试样,尺寸为20×3.8×0.5。由于经受机械和热载荷的宿主结构,从粘合和未粘合的FBG反射的布拉格波长是不同的。提出了粘合和未粘合的FBG的布拉格波长偏移的理论预测。利用未粘合的FBG的布拉格波长偏移,可以确定温度并与机械应变无关。粘合FBG的布拉格波长偏移允许确定机械菌株。将通过FBG传感器测量的温度与来自热电偶的结果进行比较,而机械应变被理论预测验证。实验测量和理论预测之间的良好一致性表明,可以使用具有一个单一FBG传感器的所提出的方法来实现温度 - 应变辨别。

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