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Comparison of Ultrasonic Non-Contact Air-Coupled Techniques for Characterization of Impact-Type Defects in Pultruded GFRP Composites

机译:超声波非接触式空气耦合技术的比较用于拉挤GFRP复合材料中冲击型缺陷的表征

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摘要

This article compares different air-coupled ultrasonic testing methods to characterize impact-type defects in a pultruded quasi-isotropic glass fiber-reinforced plastic (GFRP) composite plate. Using the air-coupled transducers, comparisons among three methods were performed, namely, bulk-wave through transmission, single-side access using guided waves, and ultrasonic-guided wave tomography. The air coupled through transmission technique can determine the size and shape of impact-type defects with a higher resolution, but with the consequence of time consumption and, more importantly, the necessity of access to both sides of the sample. The guided wave technique on the other hand, allows a single-side inspection and is relatively fast. It can be used to determine the size of the defect using ultrasonic B-scan, but the exact shape of the defect will be compromised. Thus, in this article, to determine the shape of the defect, application of the parallel beam tomographic reconstruction technique using guided Lamb waves is demonstrated. Furthermore, a numerical finite element simulation was performed to study the effects of guided wave propagation in the composite sample and interaction with the internal defect. Lastly, the results from the experiments of different techniques were compared according to possibilities of defect sizing and determination of its shape.
机译:本文比较了不同的空气耦合超声波检测方法,以表征拉挤拟各向着玻璃纤维增​​强塑料(GFRP)复合板中的冲击型缺陷。使用空气耦合换能器,进行三种方法的比较,即通过传输,使用引导波的单侧访问和超声波引导波断层扫描来进行比较。通过传输技术耦合的空气可以确定具有更高分辨率的冲击型缺陷的尺寸和形状,但随着时间消耗的结果,更重要的是,进入样本的两侧的必要性。另一方面,引导波技术允许单面检查并相对较快。它可用于使用超声波B扫描来确定缺陷的尺寸,但缺陷的精确形状将受到损害。因此,在本文中,为了确定缺陷的形状,对使用引导羔羊波进行了应用的并行光束断层切断重建技术。此外,执行数值有限元模拟以研究复合样品中引导波传播的影响,以及与内部缺陷的相互作用。最后,根据缺陷尺寸和确定其形状的可能性进行比较不同技术实验的结果。

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