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Strain Modal Analysis of Small and Light Pipes Using Distributed Fibre Bragg Grating Sensors

机译:使用分布式光纤布拉格光栅传感器的轻型和小型管道的应变模态分析

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摘要

Vibration fatigue failure is a critical problem of hydraulic pipes under severe working conditions. Strain modal testing of small and light pipes is a good option for dynamic characteristic evaluation, structural health monitoring and damage identification. Unique features such as small size, light weight, and high multiplexing capability enable Fibre Bragg Grating (FBG) sensors to measure structural dynamic responses where sensor size and placement are critical. In this paper, experimental strain modal analysis of pipes using distributed FBG sensors ispresented. Strain modal analysis and parameter identification methods are introduced. Experimental strain modal testing and finite element analysis for a cantilever pipe have been carried out. The analysis results indicate that the natural frequencies and strain mode shapes of the tested pipe acquired by FBG sensors are in good agreement with the results obtained by a reference accelerometer and simulation outputs. The strain modal parameters of a hydraulic pipe were obtained by the proposed strain modal testing method. FBG sensors have been shown to be useful in the experimental strain modal analysis of small and light pipes in mechanical, aeronautic and aerospace applications.
机译:在恶劣的工作条件下,振动疲劳失效是液压管道的关键问题。小型和轻型管道的应变模态测试是动态特性评估,结构健康监测和损伤识别的不错选择。纤巧,轻巧和高复用能力等独特功能使光纤布拉格光栅(FBG)传感器能够在传感器尺寸和位置至关重要的情况下测量结构动力响应。本文提出了使用分布式FBG传感器的管道实验应变模态分析。介绍了应变模态分析和参数辨识方法。已经对悬臂管进行了实验应变模态测试和有限元分析。分析结果表明,FBG传感器获得的被测管道的固有频率和应变模式形状与参考加速度计和模拟输出获得的结果非常吻合。通过提出的应变模态测试方法获得了液压管道的应变模态参数。 FBG传感器已被证明可用于机械,航空和航天应用中的小型和轻型管道的实验应变模态分析。

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