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A Novel Efficient Approach for Defect Detection in Pipeline Structures Using Guided Ultrasonic Waves

机译:一种使用导波的管道结构缺陷检测的有效新方法

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Detection of defects is a most important task in engineering subjects because a very tiny flaw in a structure might lead to a disaster at a later stage. In this paper, a novel, efficient and effective approach using guided ultrasonic waves for defect detection in pipeline structures is proposed. Based on boundary integral equations and Fourier transform of space-wavenumber domain, this developed method for quantitative detection of defects comprises three stages: first, theoretical foundation of quantitative detection is established using the boundary integral equations and the term in the integral is defined as B(k), k for wavenumber, according to Bom approximation. Subsequently, B(k) of a known defect can be written as B0(k) by Fourier transform of space-wavenumber domain to approximately represent the feature of an unknown defect in wavenumber domain. Finally, by combining B0(k) and reflection coefficients C(k), the location and shape of the unknown defect can be efficiently and effectively reconstructed. Several examples have been tested to demonstrate the correctness of the proposed methodology. It is concluded that the general two-dimensional surface defects can be efficiently detected by this novel approach.
机译:缺陷的检测是工程主题中最重要的任务,因为结构中的微小缺陷可能会在以后导致灾难。在本文中,提出了一种新颖,有效,有效的利用导波超声波检测管道结构中缺陷的方法。基于边界积分方程和空间波数域的傅里叶变换,该缺陷的定量检测方法包括三个阶段:首先,利用边界积分方程建立定量检测的理论基础,并将积分中的项定义为B。 (k),k为波数,根据Bom逼近。随后,已知缺陷的B(k)可以写为B 0 (k)通过空间波数域的傅立叶变换来近似表示波数域中未知缺陷的特征。最后,结合B 0 (k)和反射系数C(k),可以有效地重建未知缺陷的位置和形状。已测试了几个示例,以证明所提出方法的正确性。结论是,通过这种新颖的方法可以有效地检测出一般的二维表面缺陷。

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