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Stabilization of Barkhausen noise readings by controlling a surface field waveform

机译:通过控制表面场波形来稳定Barkhausen噪声读数

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Insufficient reproducibility and measured results that are difficult to interpret are the main obstacles to widespread practical implementation of the magnetic Barkhausen noise technique as a useful non-destructive tool. This work gives a clear experimental proof that precise control of the surface magnetic field stabilizes the subsurface Barkhausen noise readout with respect to the magnetizing yoke lift-off. The surface magnetic fields above the sample were measured at two different distances by Hall sensors; the real sample field was obtained by linear extrapolation of these surface field waveforms to the sample face. This extrapolated field waveform was then adjusted to the standard triangular/sinusoidal shapes with a multi-parameter digital feedback procedure. The Barkhausen noise signal was measured locally with a bobbin coil placed on the same surface area where the magnetic field was measured.
机译:再现性不足和难以解释的测量结果是将巴克豪森磁性噪声技术作为有用的无损检测工具进行广泛实际应用的主要障碍。这项工作提供了明确的实验证据,即表面磁场的精确控制相对于磁轭的提起稳定了地下巴克豪森噪声的读数。样品上方的表面磁场是通过霍尔传感器在两个不同的距离处测量的。实际样品场是通过将这些表面场波形线性外推到样品表面而获得的。然后,通过多参数数字反馈程序将此外推场波形调整为标准三角形/正弦形状。巴克豪森噪声信号是通过将线圈架线圈放在与测量磁场相同的表面积上来局部测量的。

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