THE PROPAGATION CHARACTERISTICS OF LEAKY LAMB WAVE AND APPLICATION FOR RESIN IMPREGNATION MONITORING

Xiao Liu, Yishou Wang, X. Qing
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Abstract

The leaky Lamb wave has a broad application prospect in the fields of biosensing, concrete construction, composite material manufacturing, and so on. This paper first theoretically investigates the propagation characteristics of leaky Lamb waves when the rigid mold is loaded with water or viscous resin by one side in the semi-infinite space. As the thickness of the liquid increases, more and more energy leaks into the liquid through the solid-liquid interface. There is more energy leaking into the viscous resin than that in the water. The phase velocity and energy velocity decrease as the liquid increases. Then the amplitude reduction and phase delay of A0 mode due to the liquid loading from theoretical analysis were verified by subsequent experiments. One valid application of leaky Lamb waves in resin impregnation monitoring during the Vacuum Assisted Resin Infusion of composite materials manufacturing process was also investigated experimentally.
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漏兰姆波的传播特性及其在树脂浸渍监测中的应用
泄漏兰姆波在生物传感、混凝土施工、复合材料制造等领域有着广阔的应用前景。本文首先从理论上研究了刚性模在半无限空间中单向加载水或粘性树脂时泄漏兰姆波的传播特性。随着液体厚度的增加,越来越多的能量通过固液界面泄漏到液体中。泄漏到粘性树脂中的能量比泄漏到水中的能量要多。相速度和能量速度随液体的增加而减小。然后通过实验验证了理论分析得出的液体加载引起的A0模式的幅度减小和相位延迟。实验研究了泄漏兰姆波在复合材料真空注入过程中树脂浸渍监测中的一个有效应用。
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