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Ultrasonic Features for Evaluation of Adhesive Joints: A Comparative Study of Interface Defects

机译:用于评估粘合接头的超声特性:界面缺陷的比较研究

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摘要

Ultrasonic non-destructive evaluation in pulse-echo mode is used for the inspection of single-lap aluminum adhesive joints, which contain interface defects in bonding area. The aim of the research is to increase the probability of defect detection in addition to ensuring that the defect sizes are accurately estimated. To achieve this, this study explores additional ultrasonic features (not only amplitude) that could provide more accurate information about the quality of the structure and the presence of interface defects. In this work, two types of interface defects, namely inclusions and delaminations, were studied based on the extracted ultrasonic features in order to evaluate the expected feasibility of defect detection and the evaluation of its performance. In addition, an analysis of multiple interface reflections, which have been proved to improve detection in our previous works, was applied along with the extraction of various ultrasonic features, since it can increase the probability of defect detection. The ultrasonic features with the best performance for each defect type were identified and a comparative analysis was carried out, showing that it is more challenging to size inclusion-type defects compared to delaminations. The best performance is observed for the features such as peak-to-peak amplitude, ratio coefficients, absolute energy, absolute time of flight, mean value of the amplitude, standard deviation value, and variation coefficient for both types of defects. The maximum relative error of the defect size compared to the real one for these features is 16.9% for inclusions and 3.6% for delaminations, with minimum errors of 11.4% and 2.2%, respectively. In addition, it was determined that analysis of the data from repetitive reflections from the sample interface, namely, the aluminum-adhesive second and third reflections, that these contribute to an increase in the probability of defect detection.
机译:脉冲回波模式下的超声无损评估用于检测单搭接铝粘合接头,这些接头在粘合区域包含界面缺陷。该研究的目的是提高缺陷检出的可能性,同时确保准确估计缺陷大小。为了实现这一目标,本研究探索了额外的超声特征(不仅仅是振幅),这些特征可以提供有关结构质量和界面缺陷存在的更准确信息。在这项工作中,基于提取的超声特征研究了两种类型的界面缺陷,即夹杂物和分层缺陷,以评估缺陷检测的预期可行性及其性能评估。此外,对多重界面反射的分析在我们以前的工作中已被证明可以提高检测能力,同时提取各种超声特征,因为它可以提高缺陷检测的可能性。确定了对每种缺陷类型具有最佳性能的超声特征,并进行了比较分析,结果表明,与分层相比,对夹杂物型缺陷进行定量更具挑战性。对于两种类型的缺陷,在峰峰值振幅、比率系数、绝对能量、绝对飞行时间、振幅平均值、标准偏差值和变化系数等特征上观察到最佳性能。对于这些特征,与实际缺陷尺寸相比,缺陷尺寸的最大相对误差为夹杂物的 16.9% 和 3.6% 的分层,最小误差分别为 11.4% 和 2.2%。此外,确定对来自样品界面的重复反射(即铝粘合剂第二次和第三次反射)的数据进行分析,这些有助于增加缺陷检测的可能性。

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