首页|基于电磁法的管道屈服强度检测方法研究

基于电磁法的管道屈服强度检测方法研究

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为评估在役管道的屈服强度,本文研究了钢材微观结构对机械性能的影响,以及微观结构对电磁特性的影响,提出了一种基于电磁法的管道屈服强度检测方法,分析了钢材电磁特性对检测线圈阻抗的影响原理,建立仿真模型研究了检测频率对磁通密度及感应电流的影响,通过实验对所提出方法的有效性进行验证,并研究了温度与表面腐蚀对检测方法的影响。研究结果表明,基于电磁法的屈服强度检测方法对于Q345及Q235钢材具有良好的检测效果,当检测频率为10 kHz时两种钢材的屈服强度均与检测线圈阻抗值具有近似线性的对应关系,皮尔逊相关系数分别为0。94与0。87,阻抗值均随屈服强度增大而增大,该方法为管道屈服强度的检测提供了理论依据及实验基础。
Study on the electromagnetic method for measuring pipe yield strength
To assess the yield strength of in-service pipes,this paper investigates the impact of steel microstructure on mechanical properties and its effect on electromagnetic characteristics. A method for detecting pipe yield strength using electromagnetic techniques is proposed. The study examines how steel's electromagnetic properties influence the impedance of a detection coil and develops a simulation model to explore how detection frequency affects magnetic flux density and induced current. The method's effectiveness is validated through experiments,and the impact of temperature and surface corrosion on detection is analyzed. The results indicate that the electromagnetic-based yield strength detection method performs effectively for Q345 and Q235 steels. At a detection frequency of 10 kHz,the yield strength of both steels shows an approximately linear relationship with the detection coil's impedance,with Pearson correlation coefficients of 0.94 and 0.87,respectively. Impedance values increase with yield strength,providing both theoretical and experimental support for pipeline yield strength detection

yield strengthpipeline inspectioneddy current impedancenondestructive testing of materials

金新玖、耿浩、杨理践

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沈阳工业大学信息科学与工程学院 沈阳 110870

屈服强度 管道内检测 涡流阻抗 材料无损检测

2024

仪器仪表学报
中国仪器仪表学会

仪器仪表学报

CSTPCD北大核心
影响因子:2.372
ISSN:0254-3087
年,卷(期):2024.45(10)