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Polydimethylsiloxane fabricated Optical Fiber Sensor capable of measuring both large axial and shear strain

机译:聚二甲基硅氧烷制成的光纤传感器,能够同时测量较大的轴向应变和剪切应变

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摘要

Fiber optic sensor (FOS) has received much attention in the field of Structure Health Monitoring (SHM) due to its advantages of low weight, small size, high sensitivity multiplexing ability, free of electromagnetic interference and long durability. However, in harsh environments, structures often undergo large strain where few traditional fiber optic sensors could survive. This paper report a novel material with features of light-transparent, chemically inert, thermally stable material Polydimethylsiloxane(PDMS) fabricated large axial/shearing strain sensor. The sensor was fabricated by directly coupling a conventional signal mode fiber into half cured PDMS material using a translation stage under the inspection of a microscope. Meanwhile, a laser diode and a photo detector were used in the fabrication process to make sure the sensor achieved minimum light loss. An experiment was conducted later to investigate the sensor's transmission characteristic in 1310nm infrared laser relating with the applied axial/shearing strain. The results show that the proposed sensor survived an axial strain of 7.79×10~6 με; a shear of 6.49×10~4 με with good linearity and repetition. The experiment indicates that the proposed sensor can potentially be used as strain sensing elements in Structure Health Monitoring systems under earthquake or explosion.
机译:光纤传感器(FOS)具有重量轻,体积小,灵敏度高的复用能力,无电磁干扰和耐用性等优点,因此在结构健康监测(SHM)领域引起了广泛关注。但是,在恶劣的环境中,结构经常承受很大的应力,而传统的光纤传感器几乎无法幸存。本文报道了一种具有透光性,化学惰性,热稳定材料的新型材料,该材料是由聚二甲基硅氧烷(PDMS)制成的大型轴向/剪切应变传感器。通过在显微镜的检查下使用平移台将常规的信号模式光纤直接耦合到半固化的PDMS材料中来制造传感器。同时,在制造过程中使用了激光二极管和光电探测器,以确保传感器实现最小的光损耗。后来进行了一项实验,以研究传感器在1310nm红外激光中的透射特性与施加的轴向/剪切应变的关系。结果表明,所提出的传感器能​​够承受7.79×10〜6με的轴向应变。剪切力为6.49×10〜4με,线性和重复性好。实验表明,提出的传感器可以潜在地用作地震或爆炸下结构健康监测系统中的应变传感元件。

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