Damage Detection in a Plate Structure based on FBG sensing Technique under a Single-Mode Lamb Wave

Cai Li, Hunag Xiao, Zuo Xiaoqiong
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引用次数: 1

Abstract

Lamb wave is widely acknowledged as one of the most encouraging tools for damage identification in plate structures, and relevant research has been conducted intensively. However Lamb wave modes have different wave structure, frequency dispersion and attenuation characteristics, which are sensitivity to different types of damages and it is difficult to solve such engineering problems by conventional techniques. Although the single pattern detection method has been researched by piezoelectric wafers, there is little research about FBG sensing detection under single-mode ultrasonic Lamb wave technique currently. So this paper puts forward a single-mode Lamb wave technique for crack detection based on Fiber Bragg Grating sensor, which is used to receive the waves in the plate. First of all, measuring principle of single-mode ultrasonic Lamb technique and demodulation principle of the FBG sensor are introduced. And simulation analysis in the acoustic field is devoted, whose results lay the foundation for the damage detection in the plate. Then, the experimental system is built by a single-mode Lamb wave excitation, and the feasibility of fiber Bragg grating sensors in single-mode excitation method is verified by experiments.
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单模Lamb波下基于FBG传感技术的板结构损伤检测
兰姆波是目前公认的板结构损伤识别方法之一,相关研究也得到了广泛开展。然而,兰姆波模式具有不同的波结构、频散和衰减特性,对不同类型的损伤很敏感,传统技术难以解决这类工程问题。虽然利用压电片进行了单模检测方法的研究,但目前对单模超声兰姆波技术下光纤光栅传感检测的研究还很少。为此,本文提出了一种基于光纤光栅传感器的单模Lamb波检测技术,该技术用于接收板中的Lamb波。首先介绍了单模超声Lamb技术的测量原理和光纤光栅传感器的解调原理。并进行了声场仿真分析,为板的损伤检测奠定了基础。然后,通过单模兰姆波激励建立了实验系统,并通过实验验证了光纤布拉格光栅传感器单模激励方式的可行性。
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