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Development of the specular echoes estimator to predict relevant modes for Total Focusing Method imaging

机译:开发镜面回波估计器以预测总聚焦方法成像的相关模式

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Total Focusing Method imaging is an ultrasonic testing method which has emerged in recent years as an alternative to standard phased array inspection methods in non-destructive testing, due to its high resolution and the realistic images of defects that it provides.In the case of crack-like defects, it provides images where the profile and the tips of the defects are reconstructed. TFM imaging is a procedure which yields the spatial position of the reflectors from which the main transient signals observed in the data are originated from. Thereby, diffraction echoes are located at the tips of the defect, and specular echoes appear along the profile of the defect. This signature allows the characterization of the planar nature of the defect.However, a correct reconstruction requires the use of the relevant ultrasonic path to produce the echoes wanted among a large number of possible paths between the array transducer and the reflector.In this paper, we have developed a method based on physical considerations, for predicting relevant paths. The tool is applied in several inspection configurations involving notches nearby welds. Validation is achieved from a variety of synthetic and experimental results.
机译:全聚焦法成像是一种超声波测试方法,近年来由于其高分辨率和提供的真实缺陷图像而成为无损测试中标准相控阵检查方法的替代方法。类缺陷,它提供了图像,其中缺陷的轮廓和尖端得以重建。 TFM成像是产生反射器空间位置的过程,数据中观察到的主要瞬态信号是从该反射器的空间位置产生的。因此,衍射回波位于缺陷的尖端,镜面回波沿缺陷的轮廓出现。这种特征可以表征缺陷的平面性质,但是,正确的重建需要使用相关的超声波路径在阵列换能器和反射器之间的大量可能路径中产生所需的回波。我们已经开发出一种基于物理考虑的方法来预测相关路径。该工具可用于多种检查配置中,包括附近焊缝的切口。可以从各种合成和实验结果中进行验证。

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