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Optical fiber sensor systems for simultaneous monitoring of strain and fractures in composites

机译:用于同时监测复合材料中的应变和断裂的光纤传感器系统

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In this paper, a fiber optic health monitoring system was proposed and applied to the sensing of strain and fracture behaviors of composites. In order to detect strain and fracture signals simultaneously, we combined a white light interferometer with an intensity demodulator in an EFPI (extrinsic Fabry-Perot interferometer) sensor. Both a broadband light source and a narrowband filter such as an FBG (fiber Bragg grating) and a Fabry-Perot filter were coupled in an EFPI sensor imbedded in composite specimens. This paper compares the performance of two fracture sensing units with differing intensity demodulating filters and describes the implementation of the time-frequency analysis of STFT (short time Fourier transform) for the detection of the fracture signals like matrix cracking. From the test of tensile load monitoring using the optical fiber sensor system, the measured strain agreed with the value of an electric strain gage, and the fracture sensing unit could detect matrix cracking with high sensitivity to recognize the onset of the micro-crack fracture signals.
机译:本文提出了一种光纤健康监测系统,并将其应用于复合材料的应变和断裂行为的检测。为了同时检测应变和断裂信号,我们在EFPI(外部法布里-珀罗干涉仪)传感器中结合了白光干涉仪和强度解调器。宽带光源和诸如FBG(光纤布拉格光栅)之类的窄带滤光片和Fabry-Perot滤光片都在嵌入复合材料标本的EFPI传感器中耦合。本文比较了具有不同强度解调滤波器的两个裂缝感测单元的性能,并描述了STFT(短时傅立叶变换)的时频分析的实现,用于检测裂缝信号(如矩阵裂缝)。通过使用光纤传感器系统进行拉伸载荷监控测试,测得的应变与电应变计的值相符,并且断裂感测单元可以高灵敏度检测基体裂纹,以识别微裂纹断裂信号的出现。

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