The effect of ultrasound wave path estimation to defect characterization capability in half-skip total focusing method

Xiangyu Lei, H. Wirdelius, Johan E. Carlson
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Abstract

The total focusing method (TFM) is a post-processing imaging technique applied on full matrix capture (FMC) ultrasonic inspection (UT) dataset. In TFM the ultrasonic wave energy is synthetically focused on every pixel in the image region of interest (ROI). In terms of half-skip TFM (HSTFM), wave mode conversion happens when the wave rebounds at interface, such as specimen backwall. This paper aims to propose and evaluate a method that involves Snell’s law to address accurate estimation of distanceof-flight (DOF) of wave propagation when wave mode conversion appears in HSTFM. This HSTFM algorithm is applied to both experimental and simulated FMC dataset that inspects a surface-breaking notch for notch image reconstruction. Comparisons between images with and without considering Snell’s law in wave mode conversion show visible difference that could lead to misinterpretations in characterizing the defect. The sensitivity of TFM to varying defect features such as defect tilt angle is also studied using simulated FMC datasets.
超声波路估计对半跳过全聚焦法缺陷表征能力的影响
全聚焦法(TFM)是一种应用于全矩阵捕获(FMC)超声检测数据集的后处理成像技术。在TFM中,超声波能量被综合聚焦在图像感兴趣区域(ROI)的每个像素上。对于半跳变TFM (HSTFM),当波在试样后壁等界面处反弹时,会发生波型转换。本文旨在提出并评价一种利用斯涅尔定律来解决HSTFM中出现波型转换时波传播飞行距离(DOF)的精确估计的方法。该HSTFM算法应用于实验和模拟FMC数据集,该数据集检测表面破碎陷波进行陷波图像重建。在波形转换中考虑和不考虑Snell定律的图像之间的比较显示出明显的差异,这可能导致对缺陷特征的误解。利用模拟FMC数据集,研究了TFM对缺陷倾斜角等缺陷特征的敏感性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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