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Strain monitoring and fatigue life of Bragg grating fiber optic sensors

机译:布拉格光栅光纤传感器的应变监测与疲劳寿命

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摘要

The number of advanced senors such as optical fiber sensors has exhibited tremendous growth in recent years. Optical fiber sensors, which are dielectric and chemically inert, possess characteristics that are attractive for aerospace applications. These characteristics include small size, immunity to Electromagnetic (EM) and radio frequency (RF) interference, solid state electronics reliability, geometric versatility and flexibility, and multi-parametric sensitivity. In this paper in-fiber Bragg grating fiber optic sensors are employed as strain sensors. The output of the fiber optic sensor is evaluated against currently employed sensors, resistance strain gauges and a photoelastic coating, for sensitivity, accuracy, reliability, and fatigue durability. This experimental study, which employs a tensile specimen with bonded sensors and sensors embedded between the host material and a photoelastic coating, also illustrates the reduced intrusiveness of embedded optical fiber sensors as compared to resistance strain gauges.
机译:近年来,光纤传感器等先进的参赛者的数量表现出巨大的增长。光纤传感器,其是电介质和化学惰性的,具有对航空航天应用具有吸引力的特性。这些特性包括小尺寸,电磁(EM)和射频(RF)干扰,固态电子可靠性,几何多功能性和灵活性,以及​​多参数灵敏度。在本文中,光纤布拉格光栅光纤传感器用作应变传感器。针对目前采用的传感器,电阻应变仪和光弹性涂层评估光纤传感器的输出,用于灵敏度,精度,可靠性和疲劳耐久性。该实验研究采用具有粘合传感器的拉伸样品和嵌入在主体材料和光弹性涂层之间的传感器,也说明了与电阻应变仪相比的嵌入式光纤传感器的侵入性降低。

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