College of Information Science and Engineering, Shenyang University of Technology, Shenyang 110870, China.
Sensors (Basel). 2023 Jul 7;23(13):6221. doi: 10.3390/s23136221.
Pipeline magnetic flux leakage inspection is widely used in the evaluation of material defect detection due to its advantages of having no coupling agent and easy implementation. The quantification of defect size is an important part of magnetic flux leakage testing. Defects of different geometrical dimensions produce signal waveforms with different characteristics after excitation. The key to achieving defect quantification is an accurate description of the relationship between the magnetic leakage signal and the size. In this paper, a calculation model for solving the defect leakage field based on the non-uniform magnetic charge distribution of magnetic dipoles is developed. Based on the traditional uniformly distributed magnetic charge model, the magnetic charge density distribution model is improved. Considering the variation of magnetic charge density with different depth positions, the triaxial signal characteristics of the defect are obtained by vector synthesis calculation. Simultaneous design of excitation pulling experiment. The leakage field distribution of rectangular defects with different geometries is analyzed. The experimental results show that the change in defect size will have an impact on the area of the defect leakage field distribution, and the larger the length and wider the width of the defect, the more sensitive the impact on the leakage field distribution. The solution model is consistent with the experimentally obtained leakage signal distribution law, and the model is a practical guide by which to improve the quality of defect evaluation.
管道漏磁检测因其无需耦合剂且易于实施等优点,在材料缺陷检测评估中得到了广泛的应用。缺陷尺寸的定量是漏磁检测的一个重要组成部分。不同几何尺寸的缺陷在激励后会产生具有不同特征的信号波形。实现缺陷定量的关键是准确描述漏磁信号与尺寸之间的关系。本文提出了一种基于磁偶极子非均匀磁荷分布的漏磁场计算模型。在传统的均匀磁荷模型基础上,改进了磁荷密度分布模型。考虑磁荷密度随深度位置的变化,通过矢量合成计算得到了缺陷的三轴信号特征。同时设计了激励拉拔实验。分析了不同几何形状的矩形缺陷的漏磁场分布。实验结果表明,缺陷尺寸的变化会对缺陷漏磁场分布的面积产生影响,缺陷的长度和宽度越大,对漏磁场分布的影响越敏感。该解决方案模型与实验获得的漏信号分布规律一致,为提高缺陷评估质量提供了实用指导。