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使用改进的三向LCR超声方法测量各向异性管壁中的平面应力。

Plane-Stress Measurement in Anisotropic Pipe Walls Using an Improved Tri-Directional LCR Ultrasonic Method.

作者信息

Li Yukun, Wang Longsheng, Fei Fan, Wang Dongying, Xue Zhangna, Liu Xin, Sun Xinyu

机构信息

College of Pipeline and Civil Engineering Institute, China University of Petroleum (East China), Qingdao 266580, China.

PipeChina Beijing Gas Pipeline Co., Ltd., Beijing 100101, China.

出版信息

Sensors (Basel). 2025 Jul 12;25(14):4371. doi: 10.3390/s25144371.

Abstract

It is important to accurately characterize the plane-stress state of pipe walls for evaluating the bearing capacity of the pipe and ensuring the structural safety. This paper describes a novel ultrasonic technique for evaluating anisotropic pipe-wall plane stresses using three-directional longitudinal critical refracted (LCR) wave time-of-flight (TOF) measurements. The connection between plane stress and ultrasonic TOF is confirmed by examining how the anisotropy of rolled steel plates affects the speed of ultrasonic wave propagation, which is a finding not previously documented in spiral-welded pipes. Then based on this relationship, an ultrasonic stress coefficient calibration experiment for spiral-welded pipes is designed. The results show that the principal stress obtained by the ultrasonic method is closer to the engineering stress than that obtained from the coercivity method. And, as a nondestructive testing technique, the ultrasonic method is more suitable for in-service pipelines. It also elucidates the effects of probe pressure and steel plate surface roughness on the ultrasonic TOF, obtains a threshold for probe pressure, and reveals a linear relationship between roughness and TOF. This study provides a feasible technique for nondestructive measurement of plane stress in anisotropic spiral-welded pipelines, which has potential application prospects in the health monitoring of in-service pipelines.

摘要

准确表征管壁的平面应力状态对于评估管道的承载能力和确保结构安全至关重要。本文介绍了一种新颖的超声技术,该技术利用三向纵向临界折射(LCR)波飞行时间(TOF)测量来评估各向异性管壁平面应力。通过研究轧制钢板的各向异性如何影响超声波传播速度,证实了平面应力与超声TOF之间的联系,这一发现先前在螺旋焊管中未见报道。然后基于这种关系,设计了螺旋焊管的超声应力系数校准实验。结果表明,通过超声方法获得的主应力比通过矫顽力方法获得的主应力更接近工程应力。而且,作为一种无损检测技术,超声方法更适用于在用管道。它还阐明了探头压力和钢板表面粗糙度对超声TOF的影响,获得了探头压力的阈值,并揭示了粗糙度与TOF之间的线性关系。本研究为各向异性螺旋焊管平面应力的无损测量提供了一种可行的技术,在在用管道健康监测方面具有潜在的应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5af/12298884/f1439e584aea/sensors-25-04371-g001.jpg

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