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Ultrasonic Lamb wave-based debonding monitoring of advanced honeycomb sandwich composite structures

机译:基于超声羊羔挥手的高级蜂窝夹层复合结构的剥离监测

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摘要

Honeycomb sandwich composites are extensively used in military shelters, aerospace structures, ground transportation structures, auto-racing bodies, ship panels, and other special purpose structures requiring lightweight construction materials. But debondings at the face-sheet-to-core junctions frequently occur due to the variable operating and loading conditions, which may menace the safety and overall integrity of the structural assembly. This paper aims to effectively identify such hidden debonding regions in these advanced structures, using Lamb wave-based monitoring technique. A semianalytical analysis of Lamb wave dispersion in a healthy sandwich structure is carried out to identify various Lamb modes and to study their propagation phenomenon. A combined finite element-based simulation and experimental analysis of Lamb wave propagation in sandwich panels (healthy and with debonding) are then carried out using piezoelectric transducer networks. It is observed that the presence of debonding significantly reduces the propagating Lamb wave mode amplitudes. A debonding detection algorithm, which uses the differential changes in Lamb mode amplitudes, is applied to efficiently identify single and multiple debonding regions in the structure.
机译:蜂窝夹层复合材料广泛用于军事避难所,航空航天结构,地面运输结构,自动赛车体,船舶面板等特殊用途结构,需要轻量化的建筑材料。但是,由于可变的运行和装载条件,常常发生的面部表核心连接处的借应力,这可能威胁到结构组件的安全性和整体完整性。本文旨在利用基于羊浪波的监测技术有效地识别这些先进结构中的这种隐藏的剥离区域。进行了健康夹心结构中羊光波分散的半阳性分析,以鉴定各种羊肉模式并研究其繁殖现象。然后使用压电传感器网络进行夹层板(健康和剥离)中的羊波繁殖的基于组合的基于元素的模拟和实验分析。观察到剥离的存在显着降低了传播的羔羊波模式幅度。应用利用LAMB模式幅度的差分变化的剥离检测算法,以有效地识别结构中的单个和多个借方区域。

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