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Temperature-compensated 'flat-pack' fiber optic strain gage: design and fabrication

机译:温度补偿的“扁平包装”光纤应变计:设计和制造

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摘要

Recent advances in fiber optic sensors have shown the great potential for Bragg gratings to be used as strain sensors. Optical fiber Bragg gratings offer significant advantages over traditional resistance foil strain gages, including a high degree of multipexibility, compact size, immunity to electromagnetic noise interference, and resistance to most chemicals. However, Bragg grating strain sensors have met only limited success in "real-world" applications. Two reasons for their limited presence is the inherent temperature sensitivity of the dual-parameter Bragg grating and the lack of experience of engineers with fiber optic sensors. This paper describes the development of a fiber Bragg grating strain sensor that attempts to address both of these issues. The flat-pack strain sensor incorporates a pair of Bragg gratings into a single package. One grating is bonded tightly to the pack and acts as a combined thermal-mechanical strain sensor. The second Bragg grating is packaged loosely within the sensor and is used to measure only temperature, which can then be subtracted from the tight grating, providing a temperature-compensated strain reading. By packaging the two gratings into a configuration that is similar to resistance strain gages, we expect that many of the technical and practical implementation issues of optical sensor technology will be overcome. This paper describes the details of the design and experimental testing of prototype sensor packages to validate the functionality of the fiber optic strain gage.
机译:光纤传感器的最新进展表明,布拉格光栅可用作应变传感器的巨大潜力。与传统的电阻箔应变计相比,光纤布拉格光栅具有明显的优势,包括高度的可复用性,紧凑的尺寸,对电磁噪声干扰的抵抗力以及对大多数化学药品的抵抗力。但是,布拉格光栅应变传感器在“实际”应用中仅获得了有限的成功。其存在有限的两个原因是双参数布拉格光栅固有的温度敏感性和缺乏光纤传感器工程师的经验。本文介绍了试图解决这两个问题的光纤布拉格光栅应变传感器的开发。扁平包装的应变传感器将一对布拉格光栅结合到单个包装中。一个光栅紧紧地贴在包装盒上,充当热机械应变传感器的组合。第二个布拉格光栅被松散地包装在传感器内,仅用于测量温度,然后可以从紧密光栅中减去温度,从而提供温度补偿的应变读数。通过将两个光栅封装成类似于电阻应变计的配置,我们希望可以解决光学传感器技术的许多技术和实际实现问题。本文介绍了原型传感器套件的设计和实验测试的细节,以验证光纤应变计的功能。

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