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Development of on-fiber optical sensors utilizing chromogenic materials

机译:发育式发光光学传感器的开发利用发色材料

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Abstract: On-fiber optical sensors, designed with chromogenic materials used as the fiber modified cladding, were developed for sensing environmental conditions. The design was based on the previously developed on-fiber devices. It is known that the light propagation characteristics in optical fibers are strongly influenced by the refractive index of the cladding materials. Thus, the idea of the on- fiber devices is based on replacing the passive optical fiber cladding with active or sensitive materials. For example, temperature sensors can be developed by replacing the fiber clad material with thermochromic materials. In this paper, segmented polyurethane-diacetylene copolymer (SPU), was selected as the thermochromic material for temperature sensors applications. This material has unique chromogenic properties as well as the required mechanical behaviors. During UV exposure and heat treatment, the color of the SPU copolymer varies with its refractive index. The boundary condition between core and cladding changes due to the change of the refractive index of the modified cladding material. The method used for the sensor development presented involves three steps: (a) removing the fiber jacket and cladding from a small region, (b) coating the chromogenic materials onto the modified region, and (c) integrating the optical fiber sensor components. The experimental set-up was established to detect the changes of the output signal based on the temperature variations. For the sensor evaluation, real-time measurements were performed under different heating-cooling cycles. Abrupt irreversible changes of the sensor output power were detected during the first heating-cooling cycle. At the same time, color changes of the SPU copolymer were observed in the modified region of the optical fiber. For the next heating-cooling cycles, however, the observed changes were almost completely reversible. This result demonstrates that a low-temperature sensor can be built by utilizing the chromogenic SPU copolymer as the modified cladding material. !12
机译:摘要:开发了用作纤维改性包层的发色材料设计的纤维光学传感器,用于传感环境条件。该设计基于先前开发的内光纤设备。众所周知,光纤中的光传播特性受包层材料的折射率的强烈影响。因此,导通装置的思想是基于用主动或敏感材料代替无源光纤包层。例如,温度传感器可以通过用热致变色材料代替纤维包覆材料来开发。在本文中,选择分段聚氨酯 - 二乙炔共聚物(SPU)作为温度传感器应用的热致变色材料。该材料具有独特的显色特性以及所需的机械行为。在UV暴露和热处理期间,SPU共聚物的颜色随着折射率而变化。由于改进的包层材料的折射率的变化,芯和包层之间的边界条件。所呈现的传感器开发的方法涉及三个步骤:(a)从小区域移除纤维夹套和覆层,(b)将发色材料涂覆到改进区域上,(c)集成光纤传感器部件。建立实验设置以检测基于温度变化的输出信号的变化。对于传感器评估,在不同的加热冷却循环下进行实时测量。在第一加热冷却循环期间检测到传感器输出功率的突然不可逆变化。同时,在光纤的改性区域中观察到SPU共聚物的颜色变化。然而,对于下一个加热冷却循环,观察到的变化几乎完全可逆。该结果表明,通过利用发色的Spu共聚物作为改性包层材料,可以构建低温传感器。 !12

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