Holmes Caroline, Drinkwater Bruce W, Wilcox Paul D
Department of Mechanical Engineering, University of Bristol, University Walk, Bristol, UK.
Ultrasonics. 2008 Nov;48(6-7):636-42. doi: 10.1016/j.ultras.2008.07.019. Epub 2008 Aug 20.
This paper describes a number of array post-processing methods developed for scanning applications in non-destructive evaluation. The approach is to capture and process the full matrix of all transmit-receive time-domain signals from the array. Post-processing the data in this way enables a multitude of imaging modalities to be implemented, including many that could not feasibly be achieved using conventional parallel firing techniques. The authors have previously published work on imaging algorithms for improving the characterisation of defects in solids by post-processing the data from a static linear ultrasonic array. These algorithms are extended and applied to data from a scanned array. This allows the effective aperture and range of probing angles to be increased, hence improving imaging and defect characterisation performance. Practical implementation issues such as scanning speed and data transfer are discussed.
本文介绍了为无损检测扫描应用开发的多种阵列后处理方法。该方法是捕获并处理来自阵列的所有发射-接收时域信号的完整矩阵。以这种方式对数据进行后处理能够实现多种成像模式,包括许多使用传统并行发射技术无法切实达成的模式。作者此前已发表关于成像算法的研究成果,该算法通过对静态线性超声阵列的数据进行后处理来改进固体中缺陷的表征。这些算法得到扩展并应用于扫描阵列的数据。这使得有效孔径和探测角度范围得以增加,从而提高成像和缺陷表征性能。文中还讨论了诸如扫描速度和数据传输等实际实施问题。