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Dynamical Properties of Magnetic Barkhausen Noise in a Soft Microalloyed Steel

机译:软微合金钢中巴克豪森磁噪声的动力学特性

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This paper investigates dynamical behavior of magnetic Barkhausen noise (BN). The measurements were performed for a soft mild steel at controllable magnetizing conditions: 1) the fixed sinusoidal/triangular waveforms of the magnetic induction or 2) the surface magnetic field. Two vertically mounted Hall sensors were used for direct determination of the sample magnetic field. The BN was detected locally by a surface-mounted coil. A typical two-peak shape of the BN envelope was found to reduce to a usual single-peak profile at the constant field rate. These two peaks were shown to correspond to the regions of the magnetic domain reconfiguration preceding and following the rapid magnetization reversal at the coercive field. In ac magnetizing frequency range of 0.2–30 Hz, the BN parameters followed a nearly square root dependence on the frequency. A low-frequency component of the BN signal, approximately up to 25 kHz, was revealed to contain an important part of the micromagnetic information.
机译:本文研究了巴克豪森磁噪声(BN)的动力学行为。测量是在软磁钢的可控磁化条件下进行的:1)固定的正弦/三角磁感应波形或2)表面磁场。两个垂直安装的霍尔传感器用于直接确定样品磁场。 BN是通过表面安装线圈局部检测到的。发现在恒定的场频下,典型的BN包络线的两个峰形可以减小到通常的单峰形。示出了这两个峰对应于矫顽场处的快速磁化反转之前和之后的磁畴重配置区域。在0.2-30 Hz的交流励磁频率范围内,BN参数对频率的近似平方根依赖性。 BN信号的低频成分(大约高达25 kHz)被发现包含微磁信息的重要部分。

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