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Brillouin Optical Correlation Domain Analysis in Composite Material Beams

机译:复合材料束中的布里渊光学相关域分析

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摘要

Structural health monitoring is a critical requirement in many composites. Numerous monitoring strategies rely on measurements of temperature or strain (or both), however these are often restricted to point-sensing or to the coverage of small areas. Spatially-continuous data can be obtained with optical fiber sensors. In this work, we report high-resolution distributed Brillouin sensing over standard fibers that are embedded in composite structures. A phase-coded, Brillouin optical correlation domain analysis (B-OCDA) protocol was employed, with spatial resolution of 2 cm and sensitivity of 1 °K or 20 micro-strain. A portable measurement setup was designed and assembled on the premises of a composite structures manufacturer. The setup was successfully utilized in several structural health monitoring scenarios: (a) monitoring the production and curing of a composite beam over 60 h; (b) estimating the stiffness and Young’s modulus of a composite beam; and (c) distributed strain measurements across the surfaces of a model wing of an unmanned aerial vehicle. The measurements are supported by the predictions of structural analysis calculations. The results illustrate the potential added values of high-resolution, distributed Brillouin sensing in the structural health monitoring of composites.
机译:结构健康监测是许多复合材料的关键要求。许多监视策略都依赖于温度或应变(或两者)的测量,但是,这些策略通常仅限于点感测或小区域的覆盖范围。可以使用光纤传感器获得空间连续的数据。在这项工作中,我们报告了嵌入在复合结构中的标准纤维上的高分辨率分布式布里渊传感器。采用了相位编码的布里渊光学相关域分析(B-OCDA)协议,其空间分辨率为2 cm,灵敏度为1°K或20微应变。便携式测量设备是在复合结构制造商的前提下设计和组装的。该装置已成功用于多种结构健康监测方案:(a)在60小时内监测复合梁的生产和固化; (b)估算复合梁的刚度和杨氏模量; (c)在无人飞行器模型机翼的整个表面上分布应变测量值。结构分析计算的预测支持这些测量。结果表明,在复合材料的结构健康监测中,高分辨率的分布式布里渊传感器具有潜在的附加价值。

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