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Phased Array Ultrasonic Testing of Dissimilar Metal Welds using Geometric based Referencing Delay Law Technique

机译:基于几何参考延迟定律技术的相异金属焊接相控阵超声测试

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Phased array ultrasonic testing (PAUT) techniques are widely used for the non-destructive testing (NDT) of austenitic welds to find defects like cracks. However, the propagation of ultrasound waves through the austenitic material is intricate due to its inhomogeneous and anisotropic nature. Such a characteristic leads beam path distorted which causes the signal to be misinterpreted. By employing a reference block which is cutout from the mockup of which the structure is a dissimilar metal weld (DMW), a new method of PAUT named as Referencing Delay Law Technique (RDLT) is introduced. With the RDLT, full matrix capture (FMC) was used for data acquisition. To reconstruct the images, total focusing method (TFM) was used. After the focal laws were calculated, PAUT was then performed. As a result, the flaws are more precisely positioned with significantly increased signal-to-noise ratio (SNR).
机译:相控阵超声检测(PAUT)技术被广泛用于奥氏体焊缝的无损检测(NDT),以发现裂纹等缺陷。然而,由于其不均匀和各向异性的性质,超声波通过奥氏体材料的传播是复杂的。这种特性导致光束路径失真,从而导致信号被误解。通过使用从其模型为异种金属焊缝(DMW)的模型中切出的参考块,引入了一种称为参考延迟定律技术(RDLT)的PAUT新方法。借助RDLT,全矩阵捕获(FMC)用于数据采集。为了重建图像,使用了全聚焦方法(TFM)。计算焦点定律后,然后执行PAUT。结果,缺陷的定位更加精确,信噪比(SNR)大大提高。

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