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Effect of Excitation Field Strength on Magnetic Barkhausen Noise Profile in Case Carburized EN 36 Steel

机译:渗碳EN 36钢磁性Barkhausen噪声型磁性Barkhausen噪声分布的影响

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The sensitivity of magnetic Barkhausen noise (MBN) profile to changes in the excitation field strength has been investigated in case carburized EN36 steel. In general, the 0.5 mm case depth EN 36 steel specimen induces a double peak profile indicative of inhomogeneity through the detected depth in the magnetized landscape. Various excitation field amplitudes have been applied to the electromagnet to generate various excitation fields on the specimen surface. Excitation field at the lowest level induced an MBN emission of two peaks of equivalent heights at low current value. The first peak occurs at lower field than the second peak in each half magnetization cycle. As the excitation field increases, the height of both peaks increased but the second peak, at higher field, increases in a higher rate than that of the first peak at lower field. Beyond certain magnetizing voltage, both peaks heights began to saturate and no further increase in the MBN intensity has been noticed. The results are discussed on the basis of the available theories on MBN.
机译:在渗碳EN36钢的情况下,研究了磁性Barkhausen噪声(MBN)噪声(MBN)轮廓变化的敏感性。通常,0.5mm壳体深度EN 36钢标本通过检测到的磁化景观中的深度诱导指示不均匀性的双峰曲线。已经将各种激励场幅度施加到电磁体上以在样本表面上产生各种激励场。在低电流值下,最低水平处的激励场在低电流值下引起了两个等效高度的两个峰的发射。第一峰在较低的场上发生比每个半磁化循环中的第二峰值。随着激励场的增加,两个峰的高度增加但在较高场处的第二峰值增加比下场的第一峰值的速率更高。超出某些磁化电压,峰值高度开始饱和,并且已经注意到MBN强度的进一步增加。结果是在MBN上的可用理论的基础上讨论的。

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