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Fiber Optic Sensor Embedment Study for Multi-Parameter Strain Sensing

机译:用于多参数应变传感的光纤传感器嵌入研究

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摘要

The fiber optic sensors (FOSs) are commonly used for large-scale structure monitoring systems for their small size, noise free and low electrical risk characteristics. Embedded fiber optic sensors (FOSs) lead to micro-damage in composite structures. This damage generation threshold is based on the coating material of the FOSs and their diameter. In addition, embedded FOSs are aligned parallel to reinforcement fibers to avoid micro-damage creation. This linear positioning of distributed FOS fails to provide all strain parameters. We suggest novel sinusoidal sensor positioning to overcome this issue. This method tends to provide multi-parameter strains in a large surface area. The effectiveness of sinusoidal FOS positioning over linear FOS positioning is studied under both numerical and experimental methods. This study proves the advantages of the sinusoidal positioning method for FOS in composite material’s bonding.
机译:光纤传感器(FOS)因其体积小,无噪声和低电气风险特性而通常用于大型结构监视系统。嵌入式光纤传感器(FOS)导致复合结构中的微损伤。损坏产生阈值基于FOS的涂层材料及其直径。此外,嵌入式FOS与增强纤维平行排列,以避免产生微损伤。分布式FOS的这种线性定位无法提供所有应变参数。我们建议采用新颖的正弦波传感器定位来解决此问题。该方法趋于在大表面积上提供多参数应变。通过数值和实验方法研究了正弦FOS定位相对于线性FOS定位的有效性。这项研究证明了FOS的正弦定位方法在复合材料粘接中的优势。

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