Application of Golay-based total focusing method using a high-frequency, lead-free, flexible ultrasonic array for inspection of thick non-planar industrial components

IF 4.5 2区 材料科学 Q1 MATERIALS SCIENCE, CHARACTERIZATION & TESTING Ndt & E International Pub Date : 2025-03-01 Epub Date: 2024-11-25 DOI:10.1016/j.ndteint.2024.103282
Elmergue Germano , Morteza Tabatabaeipour , Ehsan Mohseni , David Lines , Charles N. MacLeod , Kwok-Ho Lam , David Hughes , Heather Trodden , Anthony Gachagan
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Abstract

The compromise between axial resolution and penetration depth in ultrasound imaging poses a challenge for high-frequency ultrasonic arrays, limiting their ability to effectively inspect thick components in industrial applications. In this work, a commercial 20 MHz, 64 element, 1 mm pitch lead-free flexible linear array was characterised in terms of its performance. The array was subsequently evaluated using Golay-coded excitation techniques to enhance the signal-to-noise ratio (SNR) and operability on non-planar thick components. The SNR improvement verification results were acquired with the array deployed on a 100 mm thick flat aluminium test specimen. As expected, an increase in SNR was observed as the Golay code length increased. The imaging strategy employed a combination of Full Matrix Capture (FMC) and Total Focusing Method (TFM) to assess the performance variations between the conventional pulse excitation and Golay-coded excitation. The Golay-based TFM demonstrated superior performance compared to the conventional pulse-based TFM, with an SNR improvement of 4.95 dB when using the full array aperture to inspect the non-planar steel S355 specimen. A sub-aperture selection approach, based on the effect of the array element beam spread, offered additional SNR improvement of up to 8.2 dB. Greater imaging penetration depth was achieved, with an increase of >40 % compared to conventional pulse-based TFM. Thus, for inspection of thick non-planar industrial components using a lead-free high-frequency array, Golay-coded excitation schemes show excellent potential to enhance SNR, penetration depth and imaging quality.
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基于高频率、无铅、柔性超声阵列的全聚焦方法在厚非平面工业部件检测中的应用
超声成像中轴向分辨率和穿透深度之间的折衷给高频超声阵列带来了挑战,限制了它们在工业应用中有效检测厚部件的能力。在这项工作中,一个商业化的20 MHz, 64元件,1毫米间距的无铅柔性线性阵列在其性能方面进行了表征。随后使用golay编码激励技术对该阵列进行评估,以提高信噪比(SNR)和非平面厚组件的可操作性。将该阵列部署在100 mm厚的平板铝试样上,获得了信噪比改善的验证结果。正如预期的那样,随着Golay码长的增加,观察到信噪比的增加。成像策略采用全矩阵捕获(FMC)和全聚焦法(TFM)相结合的方法来评估常规脉冲激励和golay编码激励之间的性能差异。与传统的脉冲TFM相比,基于golay的TFM表现出了更好的性能,当使用全阵列孔径检测非平面钢S355试样时,信噪比提高了4.95 dB。基于阵元波束扩展效应的子孔径选择方法可将信噪比提高8.2 dB。与传统的脉冲TFM相比,实现了更大的成像穿透深度,增加了40%。因此,对于使用无铅高频阵列检测厚非平面工业部件,golay编码激励方案在提高信噪比、穿透深度和成像质量方面表现出极好的潜力。
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来源期刊
Ndt & E International
Ndt & E International 工程技术-材料科学:表征与测试
CiteScore
7.20
自引率
9.50%
发文量
121
审稿时长
55 days
期刊介绍: NDT&E international publishes peer-reviewed results of original research and development in all categories of the fields of nondestructive testing and evaluation including ultrasonics, electromagnetics, radiography, optical and thermal methods. In addition to traditional NDE topics, the emerging technology area of inspection of civil structures and materials is also emphasized. The journal publishes original papers on research and development of new inspection techniques and methods, as well as on novel and innovative applications of established methods. Papers on NDE sensors and their applications both for inspection and process control, as well as papers describing novel NDE systems for structural health monitoring and their performance in industrial settings are also considered. Other regular features include international news, new equipment and a calendar of forthcoming worldwide meetings. This journal is listed in Current Contents.
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