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Stabilization of the Barkhausen Noise Parameters

机译:Barkhausen噪声参数的稳定化

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The Barkhausen noise was measured in nonoriented Fe–3%Si steel with different average grain sizes. Air gaps between the yoke and the measured objects were also varied during the measurements. The change of the grain size was achieved by different combinations of cold rolling and heat treatment processes. The rise of the gap size degraded the level of the Barkhausen noise and caused that the parameters of the Barkhausen noise, such as the amplitude of the Barkhausen noise's envelope, decreased. In order to suppress the influence of the air gap size on the measurement results, we analyzed the amplitude probability distribution of the Barkhausen noise and we found that the distribution at small levels of the voltage practically does not change with the grain size, but it increases with rise of the gap size. This change of the amplitude probability distribution with the gap size was used to correct the amplitude of the Barkhausen noise's envelope. It was shown that the correction essentially increases the precision of the evaluation of the grain size at varying air gap. Similar technique can be used also to decrease the error of evaluation of other microstructural changes of ferromagnetic materials using the Barkhausen noise method, without measuring and feedback setting the defined waveform of the magnetic field in the sample. For this method to be applicable, several conditions should be met, especially the level of the Barkhausen noise should be essentially higher than the level of the disturbing noise.
机译:在具有不同平均晶粒度的无取向Fe–3%Si钢中测量了Barkhausen噪声。在测量期间,轭和被测物体之间的气隙也发生变化。晶粒尺寸的变化是通过冷轧和热处理工艺的不同组合实现的。间隙尺寸的增加使Barkhausen噪声的水平降低,并导致Barkhausen噪声的参数(例如Barkhausen噪声的包络幅度)降低。为了抑制气隙尺寸对测量结果的影响,我们分析了巴克豪森噪声的幅度概率分布,发现小电压水平下的分布实际上不随晶粒尺寸而变化,而是随晶粒尺寸的增加而变化。随着间隙尺寸的增加。振幅概率分布随间隙大小的这种变化用于校正Barkhausen噪声包络线的振幅。结果表明,该校正实质上提高了在变化的气隙下评估晶粒尺寸的精度。也可以使用类似的技术来减少使用Barkhausen噪声法评估铁磁材料的其他微结构变化的误差,而无需测量和反馈设置样本中磁场的定义波形。为了使这种方法适用,应满足几个条件,特别是Barkhausen噪声的水平应实质上高于干扰噪声的水平。

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