An Eddy Current Nondestructive Method for Crack Detection in Multilayer Riveted Structures

Q3 Engineering
A. Abdou, O. Safer, T. Bouchala, A. Bendaikha, B. Abdelhadi, A. Guettafi, A. Benoudjit
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引用次数: 4

Abstract

Received: 8 June 2019 Accepted: 12 September 2019 It is a challenging task to detect the hidden cracks in multilayer riveted structures in a nondestructive manner. This paper puts forward an eddy current nondestructive method for crack detection in such structures based on the electric conductivity of the rivets. Specifically, an eddy current sensor was designed with a ferrite core coil to evaluate the surface and inner defects of different layers. The magnetic phenomena during the detection process was simulated based on the magnetic potential and the scalar electrical potential, and the magnetic potential vector was solved by finite-element method. The proposed method was compared with the eddy current detection method without considering rivet conductivity through an experiment on a three-layer riveted aluminum structure. The length and position of each defect on each layer were changed in the experiment. The results show that the proposed method achieved better accuracy than the contrastive method, and its sensitivity depends on two issues: the position of the defect relative to the separation of the layers and the length of the defect relative to the length of the rivet head. The research results are of great significance for nondestructive testing of multilayer riveted structures in many fields.
涡流无损检测多层铆接结构裂纹的方法
以无损的方式检测多层铆接结构的隐藏裂缝是一项具有挑战性的任务。本文提出了一种基于铆钉导电性的涡流无损检测方法。具体而言,设计了一种铁氧体铁芯线圈涡流传感器,用于评估不同层的表面和内部缺陷。基于磁势和标量电势对探测过程中的磁现象进行了模拟,并采用有限元法求解了磁势矢量。通过对三层铆接铝结构的实验,将该方法与不考虑铆钉导电性的涡流检测方法进行了比较。实验中改变了每一层缺陷的长度和位置。结果表明,该方法的精度优于对比法,其灵敏度取决于两个问题:缺陷的位置相对于层间距和缺陷的长度相对于铆钉头长度。研究结果对多层铆接结构的无损检测具有重要的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Instrumentation Mesure Metrologie
Instrumentation Mesure Metrologie Engineering-Engineering (miscellaneous)
CiteScore
1.70
自引率
0.00%
发文量
25
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