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基于超声剪切波的钢管疲劳状态表征

Fatigue State Characterization of Steel Pipes Using Ultrasonic Shear Waves.

作者信息

Sarris Georgios, Haslinger Stewart G, Huthwaite Peter, Lowe Michael J S

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2023 Jan;70(1):72-80. doi: 10.1109/TUFFC.2022.3226502. Epub 2023 Jan 11.

Abstract

The phenomenon of the reduction in the propagation speed of an ultrasonic wave when it travels through a fatigue zone has been well-studied in the literature. In addition, it has been established that shear waves are more severely affected by the presence of such a zone, compared with longitudinal waves. Our study uses these phenomena to develop a method able to characterize the fatigue state of steel pipes. Initially, the existing theory regarding the increased sensitivity of shear waves to the presence of fatigue is validated through measuring and comparing the change in propagation speed of both longitudinal and bulk shear waves on flat geometries, at different fatigue states. The comparison is achieved with the aid of ultrasonic speed C-scans of both longitudinal and shear waves, with the latter now being obtainable through our implementation of advances in electromagnetic acoustic transducers (EMATs) technology. EMATs have not been traditionally used for producing C-scans, and their ability do to so with adequate repeatability is demonstrated here; we show that shear wave scanning with EMATs now provides a possibility for inspection of fatigue damage on the inner surface of pressure-containing components in the nuclear power industry. We find that the change in ultrasonic wave speed is amplified when shear waves are used, with the magnitude of this amplification agreeing well with the theory. Following the verification of the theory, the use of EMATs allowed us to tailor the shear wave scanning method to pipe geometries, where C-scans with conventional piezoelectric transducers would not have been possible, with the results successfully revealing the presence of fatigue zones.

摘要

超声波在疲劳区域传播时传播速度降低的现象在文献中已有充分研究。此外,已经确定,与纵波相比,剪切波受该区域存在的影响更为严重。我们的研究利用这些现象开发了一种能够表征钢管疲劳状态的方法。首先,通过测量和比较不同疲劳状态下平面几何形状上纵波和体剪切波传播速度的变化,验证了关于剪切波对疲劳存在增加敏感性的现有理论。借助纵波和剪切波的超声速度C扫描进行比较,后者现在可以通过我们在电磁超声换能器(EMAT)技术方面的进展来实现。传统上,EMAT未用于制作C扫描,本文展示了其以足够的重复性进行C扫描的能力;我们表明,使用EMAT进行剪切波扫描现在为检查核电行业承压部件内表面的疲劳损伤提供了可能性。我们发现,当使用剪切波时,超声波速度的变化会被放大,这种放大的幅度与理论非常吻合。在理论验证之后,使用EMAT使我们能够将剪切波扫描方法应用于管道几何形状,而使用传统压电换能器进行C扫描是不可能的,结果成功地揭示了疲劳区域的存在。

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