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NON-CONTACT TUBE INSPECTION TECHNIQUE USING LASER GENERATION OF GUIDED WAVE AND ITS RECEPTION BY AIR-COUPLED TRANSDUCER

机译:激光导波的非接触式管道检测技术及其空耦合传感器的接收

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摘要

Ultrasonic guided wave has been widely used for the tube inspection. The conventional method is to use piezoelectric transducers that should be contacted to the target surface. In recent years, however, the non-contact method is strongly required in the automation of inspection process for the manufacturers as well as in dangerous environmental in-service inspection. In this paper, we have proposed a non-contact inspection method generating the ultrasonic guided wave by laser and receiving it by an air-coupled transducer. This method can generate and receive the guided wave of a specific mode with selectivity, which makes the interpretation of received signal clearer and resultantly improves the accuracy of inspection. Also the detected signal was analyzed by using the wavelet transform and it was shown that the wavelet analysis is useful for the mode identification. The proposed method was applied to the tube of 1mm thickness and 20mm outer diameter with three different types of artificial notch defects; through-wall, inside and outside of tube. The size of defects were 2~8mm long in the circumferential direction, with 100μm width. It was proven that all kinds of defects were detectable. Finally we have developed a practical automatic inspection system, in which the inspection result is displayed in a 2-D image.
机译:超声波导波已被广泛用于管子检查。传统方法是使用应与目标表面接触的压电换能器。然而,近年来,在制造商的检查过程的自动化以及危险的在役环境检查中,强烈要求使用非接触式方法。在本文中,我们提出了一种非接触式检查方法,该方法通过激光生成超声波导波并通过空气耦合换能器接收超声波导波。该方法可以选择性地产生和接收特定模式的导波,这使得对接收信号的解释更加清晰,从而提高了检查的准确性。利用小波变换对检测到的信号进行了分析,结果表明小波分析对模式识别很有用。该方法适用于厚度为1mm,外径为20mm的管,具有三种不同类型的人工缺口缺陷。管内外的直通壁。缺陷的尺寸在圆周方向上为2〜8mm长,宽度为100μm。事实证明,各种缺陷都是可以检测到的。最后,我们开发了一种实用的自动检查系统,其中检查结果以二维图像显示。

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