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A mobile crack detection system for plate-like structure based on non-linear ultrasonic fibre Bragg grating

机译:基于非线性超声光纤布拉格光栅的板状结构移动裂纹检测系统

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摘要

Many researchers have highlighted the fact that non-linear ultrasonic technology is more suitable than linear ultrasonic technology for detecting micro-cracks. In most existing non-linear ultrasonic detection systems, piezoelectric patches are pasted directly onto specimens and usedto detect ultrasonics. In this paper, a fibre Bragg grating (FBG) was adopted for sensing ultrasonics because FBGs possess many advantages over piezoelectric patches. Non-linear ultrasonic technology was combined with FBG sensing technology to detect cracks in thin aluminium plates. This studyproposed a mobile system in which the excitation and monitoring points were easily moved on the surface of a specimen because piezoelectric patches and FBGs were glued to acrylic plates and placed in contact with the specimen surface using industrial ultrasonic couplants. The influence ofacrylic plate thicknesses on the characteristics of mobile piezoelectric patches (MPPs) and FBGs was discussed. This mobile system was more flexible than traditional systems, in which piezoelectric patches and FBGs are fixed to the structures, and it did not destroy the surface of the specimen.Experimental results showed that the mobile system can detect non-linear sideband signals caused by cracks at every excitation and sensing point. The factors influencing sideband amplitude, including excitation amplitude and frequency, and the relative positions of two excitations and a FBGwere studied.
机译:许多研究人员强调了这样一个事实,即非线性超声技术比线性超声技术更适合检测微裂纹。在大多数现有的非线性超声检测系统中,压电贴片直接粘贴到样本上并用于检测超声。由于光纤光栅比压电贴片具有许多优势,因此本文采用光纤布拉格光栅(FBG)来感测超声波。非线性超声技术与FBG传感技术相结合,可检测薄铝板中的裂纹。这项研究提出了一个移动系统,在该系统中,激励点和监测点很容易在样品表面上移动,因为压电贴片和FBG被粘在丙烯酸板上,并使用工业超声波耦合剂与样品表面接触。讨论了丙烯酸板厚度对移动式压电贴片(MPP)和FBG的特性的影响。该移动系统比传统系统灵活得多,在传统系统中压电贴片和FBG固定在结构上,并且不会破坏标本的表面。实验结果表明,该移动系统可以检测到由裂纹引起的非线性边带信号在每个激励和感测点。研究了边带幅度的影响因素,包括激励幅度和频率,以及两个激励与FBG的相对位置。

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