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A full-optical strain FBG sensor for in-situ monitoring of fatigue stages via tunable DFB laser demodulation

机译:一种全光学应变FBG传感器,用于通过可调DFB激光解调出于原位监测疲劳阶段

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摘要

Continuously alternating loads and environmental temperature fluctuations can easily cause material aging and fatigue defects in some in-service infrastructures. In order to improve the load-bearing capacities of these infrastructures and prevent unexpected accidents, a flexible continuous detection system that can evaluate the health of these structural systems is needed. The detection system should have the advantages of integrated miniaturization, low cost, high stability and sensitivity, suitability for engineering applications, etc. A full-optical strain sensor based on tunable laser demodulation is designed in this paper. It uses a home-made control mainboard to monitor a 2425-T3 aluminum alloy during tensile and fatigue tests. The tensile test results indicate that the FBG sensor response correlates well with the strain measured using a strain gauge. Therefore, the load and strain can be both monitored via the FBG sensor response. The fatigue test results demonstrate that the FBG sensor presented is superior to the strain gauge and has better sensitivity and stability for vibration monitoring in complex environments. In this letter, we make full use of the FBG's advantages including its small size and light weight to implement an integrated, miniaturized FBG sensor design with significant structural health monitoring applications.
机译:连续交替的负载和环境温度波动很容易导致一些在役基础设施中的材料老化和疲劳缺陷。为了提高这些基础设施的承载能力并防止意外事故,需要一种可以评估这些结构系统的健康的柔性连续检测系统。检测系统应具有集成小型化,成本低,稳定性高,灵敏度,工程应用适用性等优点。本文设计了一种基于可调激光解调的全光学应变传感器。它采用自制控制主板在拉伸和疲劳试验期间监测2425-T3铝合金。拉伸试验结果表明FBG传感器响应良好地与使用应变计测量的菌株相相关。因此,可以通过FBG传感器响应监测负载和应变。疲劳试验结果表明,所呈现的FBG传感器优于应变计,并且具有更好的振动监测在复杂环境中的敏感性和稳定性。在这封信中,我们充分利用了FBG的优势,包括其小尺寸和重量轻,以实现具有重要结构健康监测应用的集成的小型化FBG传感器设计。

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