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Evaluation of Embedded Optical Fiber Sensors in Composites: EFPI Sensor Fabrication and Quasi-Static Evaluation

机译:复合材料中嵌入式光纤传感器的评估:EFPI传感器的制造和准静态评估

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摘要

This article reports on the fabrication and evaluation of extrinsic Fabry-Perot interferometric (EFPI) sensors when embedded in fiber-reinforced composites and tested under quasi-static tensile and compressive mechanical loading. The EFPI strain sensors were embedded in carbon fiber composite test specimens, and their performance was compared against a surface-mounted extensometer and electrical resistance strain gauges. When the composite was subjected to quasi-static tensile loading, the sensors failed around a strain level of 0.5%; under compressive loading, the sensors survived until the failure of the composite at 1.1% strain. The EFPI sensors used in this study were fabricated in-house and the issues relating to fabrication are discussed in the context of their performance when embedded in composites.
机译:本文报道了外在法布里-珀罗干涉(EFPI)传感器的制造和评估,该传感器嵌入纤维增强复合材料中并在准静态拉伸和压缩机械载荷下进行了测试。 EFPI应变传感器嵌入在碳纤维复合材料试样中,并将其性能与表面安装的引伸计和电阻应变仪进行了比较。当复合材料受到准静态拉伸载荷时,传感器在0.5%的应变水平附近失效;在压缩载荷下,传感器得以幸存,直到复合材料在1.1%的应变下失效。这项研究中使用的EFPI传感器是在内部制造的,与嵌入相关的问题将在其嵌入复合材料时的性能范围内进行讨论。

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