Strain Measurement

C. Hong, Chiyoung Ryu, Chun-Gon Kim
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引用次数: 6

Abstract

Fiber Bragg grating(FBG) sensors, one of the fiber optic sensors(FOS), based on the wavelength division multiplexing(WDM) technology are ideally suitable for structural health monitoring of composite materials and structures. Proper monitoring of measurands in FBG sensor systems requires accurate measurement of the Bragg center wavelength, and the ability to track rapid shifts of the wavelength. Thus we constructed a FBG sensor system by use of a wavelength-swept fiber laser(WSFL) in the present study. The quasi-static and dynamic strains were measured by the constructed FBG sensor system for investigation of the system performance. In addition a real-time signal processing program was made to measure strains. Three FBG sensors in an optical fiber were used to measure strains of the laminated composite panel under compressive axial loading. Experiments showed that the constructed FBG sensor system and the real-time signal processing program could successfully measure the strain of composite laminates.
应变测量
光纤布拉格光栅(FBG)传感器是基于波分复用(WDM)技术的光纤传感器(FOS)的一种,非常适合于复合材料和结构的结构健康监测。在FBG传感器系统中,适当的监测需要精确测量布拉格中心波长,并能够跟踪波长的快速变化。因此,本研究利用波长扫描光纤激光器(WSFL)构建了光纤光栅传感器系统。利用构建的光纤光栅传感器系统测量了准静态应变和动态应变,研究了系统的性能。此外,还编制了实时信号处理程序来测量应变。利用光纤中的三个光纤光栅传感器测量了复合材料层合板在轴向压缩载荷作用下的应变。实验表明,所构建的光纤光栅传感器系统和实时信号处理程序能够成功地测量复合材料层合板的应变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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