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A novel fibre optic acoustic emission sensor

机译:新型光纤声发射传感器

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摘要

This paper presents the design, theory, characterisation and application of a novel fibre optic acoustic emission (AE) sensor. The sensor consists of a pair of optical fibres that are heated, fused and drawn to create a fused-tapered region that is sensitive to acoustic perturbations. The sensor is housed in a silica V-groove. The modelling of this fibre optic AE sensor is presented with a finite element analysis on the strain field based on the effect of the geometry within the sensing region. The characterisation of the sensor was carried out using a glass block with 160mm thickness as an acoustic medium. The applications of this sensor were demonstrated in three experiments. Firstly, the sensor was surface-mounted in carbon fibre reinforced composite samples and tested to failure under tensile loading. In the second experiment, the sensor was surface-mounted on double-cantilever Mode-I test specimens. The AE response from the sensor was correlated to the inferred modes of failure during the Mode-I test. In the third experiment, the sensor was surface-mounted onto the composite "blow-off test samples. The feasibility of using the sensor to detect damage development in real-time was demonstrated.
机译:本文介绍了一种新型的光纤声发射(AE)传感器的设计,理论,特性和应用。该传感器由一对光纤组成,这些光纤被加热,融合和拉丝,以形成对声扰动敏感的融合锥形区域。传感器位于二氧化硅V型槽中。基于传感区域内几何形状的影响,对光纤AE传感器的建模进行了应变场的有限元分析。传感器的特征是使用厚度为160mm的玻璃块作为声学介质进行的。在三个实验中证明了该传感器的应用。首先,将传感器表面安装在碳纤维增强复合材料样品中,并在拉伸载荷下进行测试以检测其失效。在第二个实验中,将传感器表面安装在双悬臂模式I测试样本上。在模式I测试期间,传感器的AE响应与推断的故障模式相关。在第三个实验中,将传感器表面安装在复合的“放气测试样品”上。论证了使用该传感器实时检测损坏情况的可行性。

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