首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Fibre Bragg Gratings in Embedded Microstructured Optical Fibres Allow Distinguishing between Symmetric and Anti-Symmetric Lamb Waves in Carbon Fibre Reinforced Composites
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Fibre Bragg Gratings in Embedded Microstructured Optical Fibres Allow Distinguishing between Symmetric and Anti-Symmetric Lamb Waves in Carbon Fibre Reinforced Composites

机译:嵌入式微结构光纤中的光纤布拉格光栅可区分碳纤维增强复合材料中的对称和反对称兰姆波。

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摘要

Conventional contact sensors used for Lamb wave-based ultrasonic inspection, such as piezo-electric transducers, measure omnidirectional strain and do not allow distinguishing between fundamental symmetric and anti-symmetric modes. In this paper, we show that the use of a single fibre Bragg grating created in a dedicated microstructured optical fibre allows one to directly make the distinction between these fundamental Lamb wave modes. This feature stems from the different sensitivities of the microstructured fibre to axial and transverse strain. We fabricated carbon fibre-reinforced polymer panels equipped with embedded microstructured optical fibre sensors and experimentally demonstrated the strain waves associated with the propagating Lamb waves in both the axial and transverse directions of the optical fibre.
机译:用于基于Lamb波的超声波检查的常规接触传感器(例如压电换能器)测量全方位应变,并且不允许区分基本对称模式和反对称模式。在本文中,我们表明,使用在专用微结构光纤中创建的单光纤布拉格光栅可以使人们直接区分这些基本的Lamb波模式。该特征源于微结构纤维对轴向和横向应变的不同敏感性。我们制造了配有嵌入式微结构化光纤传感器的碳纤维增强聚合物面板,并通过实验证明了与在光纤的轴向和横向传播的兰姆波相关的应变波。

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