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Detection of Inner Corrosion of Steel Construction Using Magnetic Resistance Sensor and Magnetic Spectroscopy Analysis

机译:磁阻传感器和电磁波谱分析技术检测钢结构内部腐蚀

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摘要

The detection of the inner corrosion of steel construction, specifically backside corrosion of a steel plate, is highly demanded to maintain safety. Eddy-current testing (ECT) is widely used as a nondestructive testing and an evaluation method for detecting surface and subsurface flaws. However, the ECT is usually applied to non-ferromagnetic materials, but has difficulties when applied to ferromagnetic materials with high permeability, since the skin depth is smaller, and the signal-to-noise ratio (SNR) decreases due to magnetic flux fluctuation. In this paper, we developed a magnetic probe using an anisotropic magnetic resistance (AMR) sensor with the sensitivity of 1 nT/ Hz that can detect inner corrosion at extremely low frequency. We also developed an analysis method using magnetic spectroscopy to delete the magnetic flux fluctuation. To improve the SNR of the detected signal, a small cancellation coil around the AMR sensor canceled the applied magnetic field directly coupled to the sensor. The frequency of the applied magnetic field ranged from 1 Hz to 1 kHz. The sensor output at each frequency was lock-in detected. The weak ac magnetic field was applied to the initial permeability region of the magnetization curve. The obtained magnetic vector signal consisting of a real part and an imaginary part at each frequency was plotted as magnetic spectroscopy, and the magnetic component of the eddy current and the magnetic component of the magnetization of the steel were separated. By using the magnetic component of the eddy current, the thickness of an iron steel plate thinner than 16 mm could be measured. Moreover, the shape of the back-side corrosion was determined by scanning with the magnetic probe.
机译:为了保持安全性,强烈要求检测钢结构的内部腐蚀,特别是钢板的背面腐蚀。涡流检测(ECT)广泛用作无损检测和评估表面和亚表面缺陷的评估方法。然而,ECT通常应用于非铁磁性材料,但是当应用于具有高磁导率的铁磁性材料时会遇到困难,因为趋肤深度较小,并且由于磁通量波动,信噪比(SNR)降低。在本文中,我们开发了一种使用各向异性磁阻(AMR)传感器的磁探针,其灵敏度为1 nT / Hz,可以在极低的频率下检测内部腐蚀。我们还开发了一种使用磁光谱法消除磁通量波动的分析方法。为了提高检测信号的SNR,AMR传感器周围的一个小的抵消线圈抵消了直接耦合到传感器的施加磁场。所施加磁场的频率范围为1 Hz至1 kHz。每个频率的传感器输出均被锁定。弱交流磁场被施加到磁化曲线的初始磁导率区域。将获得的由每个频率的实部和虚部组成的磁矢量信号绘制成磁谱图,并且将涡电流的磁分量和钢的磁化强度的磁分量分离。通过使用涡电流的磁性成分,可以测定比16mm薄的铁钢板的厚度。另外,通过用磁探针进行扫描来确定背面腐蚀的形状。

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