NDE Group, Department of Mechanical Engineering, Imperial College London, London SW7 2AZ, UK.
Sensors (Basel). 2022 Apr 13;22(8):2973. doi: 10.3390/s22082973.
Detection and criticality assessment of defects appearing in inaccessible locations in pipelines pose a great challenge for many industries. Inspection methods which allow for remote defect detection and accurate characterisation are needed. Guided wave testing (GWT) is capable of screening large lengths of pipes from a single device position, however it provides very limited individual feature characterisation. This paper adapts Plane Wave Imaging (PWI) to pipe GWT to improve defect characterization for inspection in nearby locations such as a few metres from the transducers. PWI performance is evaluated using finite element (FE) and experimental studies, and it is compared to other popular synthetic focusing imaging techniques. The study is concerned with part-circumferential part-depth planar cracks. It is shown that PWI achieves superior resolution compared to the common source method (CSM) and comparable resolution to the total focusing method (TFM). The techniques involving plane wave acquisition (PWI and CSM) are found to substantially outperform methods based on full matrix capture (FMC) in terms of signal-to-noise ratio (SNR). Therefore, it is concluded that PWI which achieves good resolution and high SNR is a more attractive choice for pipe GWT, compared to other considered techniques. Subsequently, a novel PWI transduction setup is proposed, and it is shown to suppresses the transmission of unwanted 0 mode, which further improves SNR of PWI.
在许多行业中,检测和评估难以接近位置的管道缺陷是一项巨大的挑战。需要能够进行远程缺陷检测和准确特征描述的检测方法。导波测试(GWT)能够从单个设备位置对大长度的管道进行筛选,但是它对个别特征的描述非常有限。本文将平面波成像(PWI)应用于管 GWT 中,以提高在附近位置(例如距换能器几米处)的检测中的缺陷特征描述能力。通过有限元(FE)和实验研究评估了 PWI 的性能,并将其与其他流行的合成聚焦成像技术进行了比较。该研究涉及部分周向部分深度的平面裂纹。结果表明,与常见的源方法(CSM)相比,PWI 具有更高的分辨率,与全聚焦方法(TFM)的分辨率相当。在信噪比(SNR)方面,涉及平面波采集的技术(PWI 和 CSM)比基于全矩阵捕获(FMC)的方法有显著的优势。因此,与其他考虑的技术相比,PWI 具有良好的分辨率和高 SNR,是管 GWT 的更有吸引力的选择。随后,提出了一种新颖的 PWI 换能器设置,它可以抑制不需要的 0 模式的传输,从而进一步提高 PWI 的 SNR。