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首页> 外文期刊>IEEE Transactions on Magnetics >Pulsed Magnetic Field Experiments in SMM and SMC Materials: New Questions About Its Properties and Applications
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Pulsed Magnetic Field Experiments in SMM and SMC Materials: New Questions About Its Properties and Applications

机译:SMM和SMC材料中的脉冲磁场实验:关于其性能和应用的新问题

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摘要

This article analyzes the magnetization rotation behavior of Fe-based soft magnetic materials and soft magnetic composites (SMMs and SMCs, respectively) samples. Room temperature measurements of the complex permeability until frequencies near 20 MHz and isothermal M(H) magnetization curves obtained from room to low temperatures (down to 20 K) show very similar soft magnetic behavior for both type of samples. Pulsed magnetic fields have been used to test their behavior under extreme conditions. Even with a substantial increase of the field variation sweeping rate and the temperature reduction (from 20 to 300 K) both types of materials keep their pronounced non-hysteretic behavior. However, zero field cooled-field cooled (ZFC-FC) curves with an applied field lower than 7.5 kOe show full irreversibility below room temperature, which indicates the existence of a broad distribution of barrier heights and seems to be in full contradiction with the obtained complex permeability and M( H) results. In this article, we aim to clarify this new and unexpected dual behavior. We suggest the existence of pinning barrier heights which are very sensitive to the variation of the magnetic field allowing the magnetization rotation with no losses while there are other barrier heights which need high values for the magnetic static fields to be removed when the temperature changes.
机译:本文分析Fe基软磁性材料和软磁性复合材料(的SMM和平滑肌细胞,分别地)的样品的磁化旋转行为。复磁导率直至接近20MHz和等温M(1H)磁化曲线从室温到低温得到(下降到20 K)频率的室温下的测量结果表明两种类型的样品非常相似的软磁性特性。脉冲磁场已用于极端条件下测试他们的行为。甚至与场变化率扫描的大幅度增加和温度的降低(从20到300 K)这两种类型的材料保持其显着的非滞后行为。然而,零场冷却场冷却与所施加的场(ZFC-FC)曲线低于7.5千奥斯特显示低于室温,其表示势垒高度的宽分布的存在,似乎是在与所获得的完整的矛盾充分不可逆转复磁导率和M(H)的结果。在这篇文章中,我们的目的是澄清这一新的意想不到的双重行为。我们建议钉扎势垒高度它们对磁场允许与没有损失,磁旋,同时也有其需要的磁静态字段的高值当温度变化时要除去其他势垒高度的变化非常敏感的存在。

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