Study on Effect of Electromagnetic Characteristics of Deformed 304 Stainless Steel on Eddy Current Testing

Benli Wan, B. Hu, Li Yuntao, Yuhong Zhu
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引用次数: 0

Abstract

The induced ferrite and other high magnetic microstructures content changes are studied when 304 austenitic stainless steel stripe specimens are tested under different uniaxial tension deformation, namely its deformation less than 50%. Furtherly, the correlation is plotted between the resulting magnetic permeability or coercivity caused by these microstructures and deformation. Meanwhile, the optimal eddy current excitation frequency under different deformation was obtained, which was consistent with 3-D finite element analysis (FEA). Besides, other various factors affecting the quality of eddy current testing (ECT), such as temperature and conductivity, are also considered comprehensively during the tensile test. The results of the experiment and simulation calculation show that when the deformation is within 50% that necking deformation has occurred, the magnetic permeability of specimens increases with deformation, and gradually begin to have the magnetic properties of weak ferromagnetic materials, which also changes the optimal excitation frequency, which varies from 60 kHz to 110 kHz. Because of the electromagnetic response noise increase, the impedance plane diagrams of defects distort simultaneously, which leads to the quantitative evaluation error of defects.
变形304不锈钢电磁特性对涡流检测影响的研究
研究了304奥氏体不锈钢条纹试样在不同的单轴拉伸变形下,即变形量小于50%时,诱导铁素体等高磁性组织含量的变化。此外,还绘制了由这些微观结构引起的磁导率或矫顽力与变形之间的相关关系。同时,得到了不同变形条件下的最优涡流激励频率,与三维有限元分析结果一致。此外,拉伸试验还综合考虑了影响电涡流检测质量的其他各种因素,如温度、电导率等。实验和仿真计算结果表明,当变形量在颈缩变形量的50%以内时,试件的磁导率随变形量的增大而增大,并逐渐开始具有弱铁磁材料的磁性,同时最佳激励频率也发生了变化,在60 kHz ~ 110 kHz范围内变化。由于电磁响应噪声的增加,缺陷的阻抗平面图同时发生畸变,导致缺陷的定量评价出现误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
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