方文娜, 陈尧, 万智龙, 汤露平. 薄壁管道周向横波多模全聚焦检测[J]. 南昌航空大学学报(自然科学版), 2025, 39(5): 54-62. DOI: 10.3969/j.issn.2096-8566.2025.05.007
引用本文: 方文娜, 陈尧, 万智龙, 汤露平. 薄壁管道周向横波多模全聚焦检测[J]. 南昌航空大学学报(自然科学版), 2025, 39(5): 54-62. DOI: 10.3969/j.issn.2096-8566.2025.05.007
Wenna FANG, Yao CHEN, Zhilong WAN, Luping TANG. Circumferential Shear-wave Multi-mode Total Focused Method for Detection of Thin-walled Pipelines[J]. Journal of nanchang hangkong university(Natural science edition), 2025, 39(5): 54-62. DOI: 10.3969/j.issn.2096-8566.2025.05.007
Citation: Wenna FANG, Yao CHEN, Zhilong WAN, Luping TANG. Circumferential Shear-wave Multi-mode Total Focused Method for Detection of Thin-walled Pipelines[J]. Journal of nanchang hangkong university(Natural science edition), 2025, 39(5): 54-62. DOI: 10.3969/j.issn.2096-8566.2025.05.007

薄壁管道周向横波多模全聚焦检测

Circumferential Shear-wave Multi-mode Total Focused Method for Detection of Thin-walled Pipelines

  • 摘要: 为解决常规多模全聚焦技术(M-TFM)难以适用于薄壁管周向超声检测问题,本文提出周向横波多模全聚焦技术(CSM-TFM)。在常规M-TFM的基础上,根据管道周向检测的横波传播路径几何关系,推导出双层介质管道的直接、全跨和半跨的声波传播路径及传播时间表达式,并建立了适用于薄壁管道周向检测的CSM-TFM方法。以10 mm厚的平板工件和碳钢制薄壁管道(外径分别为150、100、75 mm)为对象,对比分析M-TFM与CSM-TFM的成像检测效果,并进一步分析CSM-TFM对不同外径薄壁管道周向检测的可行性。结果表明:M-TFM虽适用于平板工件的缺陷检测成像,但无法用于具有一定曲率的管道工件周向检测;CSM-TFM则能够同时实现平板工件和不同外径薄壁管道的成像检测,且其成像效果相较于M-TFM方法更好,成像也更为清晰,缺陷检出率更高。

     

    Abstract: To overcome the limitations of conventional multi-mode total focused method (M-TFM) in circumferential ultrasonic inspection of thin-walled pipes, this study proposes a circumferential shear-wave multi-mode total focused method (CSM-TFM). Based on M-TFM, analytical expressions for direct, full-skip, and half-skip wave paths and their corresponding time delays in a double-layer medium are derived by the geometric relationships of shear wave propagation in the circumferential detection of pipe structures, thereby eastablishing a CSM-TFM suitable for circumferential inspection of thin-walled pipes. Experiments were performed on a 10 mm-thick flat plate and thin-walled carbon steel pipes (outer diameters: 150 mm, 100 mm, and 75 mm) to compare the imaging performance of M-TFM and CSM-TFM. The results indicate that while M-TFM is effective for defect detection in flat plates, it fails to provide reliable circumferential imaging in curved pipe structures. In contrast, CSM-TFM achieves high-quality imaging for both flat plates and thin-walled pipes with different outer diameters, demonstrating superior defect detectability, image clarity, and circumferential coverage across varying pipe diameters.

     

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