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Automatic Inspection of Pipe using Non-contact Guided-wave Technique with Enhanced Mode-selectivity

机译:采用增强模式选择性的非接触式波动技术自动检查管道

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Ultrasonic guided wave has been widely used for the pipe inspection. The conventional method is to use piezoelectric transducers that should be contacted to the target surface. However, in order to automatically inspect pipes in the manufacturing stage, non-contact inspections are strongly required. In this paper, we propose a new non-contact method for the automation of pipe inspection, which generates the ultrasonic guided wave by laser and receives by air-coupled transducer. Also we have developed a rotational canning system to show the inspection result as a 2-D image, which makes the operator find out defects easily. Then, in practical applications of guided wave techniques, it is preferred to generate and detect a single or less dispersive mode. So this paper considers the enhancement of mode-selectivity, where a laser beam illuminated through arrayed line slits is used as the transmitter and the air-coupled transducer is used as the receiver. The line arrayed laser illumination is a wavelength matching technique that can generate only a few modes. The air-coupled transducer detects the leaky wave of the propagated guided wave, and by tuning its detection angle we can detect the selected single mode. This method can generate and receive the guided wave of a specific mode, which makes the interpretation of received signal clearer and resultantly improves the accuracy of inspection. The proposed method was applied to the stainless pipe specimen with artificial defects and its inspection performance was verified. The experimental results showed that the fundamental axial-longitudinal mode was dominantly generated and received, and the location and the size of pipe defects could be displayed well in the 2 dimensional scanning images in real time.
机译:超声波引导波已广泛用于管道检查。传统方法是使用应与目标表面接触的压电换能器。然而,为了在制造阶段自动检查管道,强烈需要非接触式检查。在本文中,我们提出了一种用于管道检查自动化的新的非接触方法,其通过激光产生超声波引导波并通过耦合换能器接收。此外,我们开发了一种旋转罐系统,以将检查结果显示为2-D图像,这使得操作员容易发现缺陷。然后,在引导波技术的实际应用中,优选产生和检测单个或更少的分散模式。因此,本文考虑了模式选择性的增强,其中通过阵列线狭缝照射的激光束用作发射器,并且空气耦合换能器用作接收器。线路阵列激光照明是一个波长匹配技术,可以仅产生几种模式。空气耦合换能器检测传播的引导波的泄漏波,并通过调整其检测角度,我们可以检测所选择的单模。该方法可以生成和接收特定模式的导向波,这使得接收信号更清晰地解释并产生了提高了检查的准确性。将该方法应用于具有人工缺陷的不锈钢管样品,验证了其检测性能。实验结果表明,基本的轴向纵向模式是显着的和接收的,并且可以实时在2维扫描图像中显示出井的位置和尺寸。

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