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Theoretical Analyses of MFL Signal Affected by Discontinuity Orientation and Sensor-Scanning Direction

机译:间断取向和传感器扫描方向对MFL信号影响的理论分析

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摘要

To improve the accuracy of the magnetic flux leakage (MFL) nondestructive testing in practical applications, we analyzed the MFL signal characteristics affected by discontinuity orientation and sensor-scanning direction. On the basis of magnetic dipole theory, the descriptions for the MFL field distributions of discontinuities in arbitrary orientations were established, indicating that the MFL density increases with the discontinuity orientation increasing from 0 to /2 and that magnetic flux always flows through the discontinuity perpendicularly, which was verified by relevant experiments. Further, the influence of the sensor-scanning direction on MFL signal features was analyzed and it was found that the MFL component signal parallel to scanning direction increases, the MFL component signal perpendicular to scanning direction falls, the MFL component signal perpendicular to discontinuity stays the same, and the widths of test signals become narrow, when the angle between the discontinuity orientation and sensor-scanning direction increases.
机译:为了提高实际应用中磁通量泄漏(MFL)无损检测的准确性,我们分析了不连续方向和传感器扫描方向对MFL信号特性的影响。根据磁偶极子理论,建立了任意方向上不连续点的MFL场分布的描述,表明MFL密度随着不连续点方向从0到/ 2的增加而增加,并且磁通量总是垂直流过该不连续点,相关实验对此进行了验证。此外,分析了传感器扫描方向对MFL信号特征的影响,发现平行于扫描方向的MFL分量信号增加,垂直于扫描方向的MFL分量信号下降,垂直于不连续点的MFL分量信号保持不变。当不连续取向与传感器扫描方向之间的角度增加时,测试信号的宽度变窄,并且测试信号的宽度变窄。

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