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The Influence of Remanence on Magnetostrictive Vibration and Hysteresis in Mn-Zn Ferrite Cores

机译:剩磁对Mn-Zn铁氧体磁芯中磁致伸缩振动和磁滞的影响

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摘要

Previously, experimental results have been presented showing that Mn-Zn ferrite core losses rise significantly with dc bias levels due to an increase in magnetostrictive vibration. In addition, it has been shown that the presence of a high level of remanent flux density, Br, left within a core after the removal of a dc bias can significantly increase core losses and, therefore, influence the hysteresis loop shape. In this paper it is shown that this loss mechanism is rate-independent in nature; furthermore, it is proposed to originate from regions of irregular stress that are dependent on the magnetostrictive vibration of a core. Accordingly, it is also proposed that certain parameters of the Jiles-Atherton (J-A) model must be modified, in order to allow influence of Br on hysteresis loops to be shown. These modifications are consistent with the real physical effects experienced by a ferrite core in the presence of a high level of Br.
机译:以前,已有实验结果表明,由于磁致伸缩振动的增加,Mn-Zn铁氧体磁心损耗随直流偏置水平而显着增加。此外,已经表明,去除直流偏置后在铁心中残留高水平的剩余通量密度B r 会显着增加铁心损耗,从而影响磁滞回线形状。本文表明,这种损失机制本质上与速率无关;此外,提出源自不规则应力的区域,该不规则应力的区域取决于芯的磁致伸缩振动。因此,还提出必须修改Jiles-Atherton(J-A)模型的某些参数,以允许显示B r 对磁滞回线的影响。这些修饰与在高含量的B r 存在下铁氧体磁芯所经历的实际物理效应是一致的。

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