A Model-Based Study of Transmit-Receive Longitudinal Arrays for Inspection of Subsurface Defects

IF 2 Q2 ENGINEERING, MULTIDISCIPLINARY
E. Mohseni, C. Macleod, Y. Javadi, Z. Qiu, R. Vithanage, D. Lines, R. Zimermann, G. Pierce, A. Gachagan
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引用次数: 0

Abstract

Dual matrix transmit-receive longitudinal (TRL) arrays have been shown to provide an improved signal to noise ratio in the near field zone which makes them the most suitable array configuration for the inspection of near-surface defects. This study aims to compare the performance of different configurations for transmit-receive longitudinal matrix arrays. For this purpose, four matrix configurations of 2 × 32, 4 × 16, 4 × 32, and 8 × 16 elements are investigated using EXTENDE CIVA modeling package. The array operating frequencies investigated are either 5 MHz or 10 MHz. The effect of different natural focal depths, arrays separation distances, dynamic electronic depth focusing, and electronic beam skewing for these TRL arrays are considered in models prepared in CIVA. The inspection of a series of flat bottom holes extended up to a few millimeters under the surface using the selected TRL configurations is also investigated in the study. It is found that the performance of focusing for near-surface areas is more efficient using the 4 × 16 and 8 × 16 elements configurations as compared with the others, and the signal amplitudes of the defects located deeper in the target material are almost independent of the configuration.
基于模型的发射-接收纵向阵列亚表面缺陷检测研究
双矩阵发射-接收纵向(TRL)阵列在近场区域提供了更好的信噪比,使其成为近表面缺陷检测的最合适的阵列配置。本研究的目的是比较不同配置的收发纵向矩阵阵列的性能。为此,利用EXTENDE CIVA建模包研究了2 × 32、4 × 16、4 × 32和8 × 16元素的四种矩阵构型。所调查的阵列工作频率为5mhz或10mhz。在CIVA中建立的模型中考虑了不同自然焦深、阵列分离距离、动态电子深度聚焦和电子束偏斜对这些TRL阵列的影响。在研究中还研究了使用选定的TRL配置对表面下延伸至几毫米的一系列平底孔的检查。结果表明,4 × 16和8 × 16单元结构对近表面区域的聚焦效果优于其他结构,且在目标材料中较深处缺陷的信号幅值几乎与结构无关。
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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来源期刊
CiteScore
3.80
自引率
9.10%
发文量
25
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