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首页> 外文期刊>Smart Materials & Structures >Fiber bragg grating based detection of part-thickness cracks in bent composite laminates using feature-guided waves
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Fiber bragg grating based detection of part-thickness cracks in bent composite laminates using feature-guided waves

机译:使用特征引导波基于弯曲复合材料层压板的部分厚度裂缝的光纤布拉格栅极

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摘要

Composite structures with bends are widely used in aerospace and industrial sectors. However health monitoring of such structures is challenging due to their complex topographical features. Recent literature shows that bends in composite laminates can confine and guide ultrasonic energy along their length, known as feature-guided waves (FGW). This article demonstrates a fiber Bragg grating based technique using FGW modes for defect detection and identification in bent composite laminates. In addition, the effects of defect depth and excitation frequency on the FGW mode reflection coefficient are reported using 3D finite element simulations. Physical insight into the reflection behavior is discussed based on an analysis of mode interaction with part-thickness cracks.
机译:具有弯曲的复合结构广泛用于航空航天和工业领域。 然而,由于其复杂的地形特征,这种结构的健康监测是具有挑战性的。 最近的文献表明,复合层压板中的弯曲可以沿其长度限制并引导超声能量,称为具有特征引导波(FGW)。 本文演示了一种基于光纤布拉格光栅的技术,用于使用FGW模式进行弯曲复合层压板中的缺陷检测和识别。 另外,使用3D有限元模拟报告了缺陷深度和激发频率对FGW模式反射系数的影响。 基于与部分厚度裂缝的模式相互作用的分析讨论了对反射行为的物理洞察。

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