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Broadband magnetic losses of nanocrystalline ribbons and powder cores

机译:纳米晶带和压粉磁芯的宽带磁损耗

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摘要

Finemet type alloys have been investigated from DC to 1 GHz at different induction levels upon different treatments: as amorphous precursors, as ribbons nanocrystallized with and without an applied saturating field, as consolidated powders. The lowest energy losses at all frequencies and maximum Snoek's product are exhibited by the transversally field-annealed ribbons. This is understood in terms of rotation-dominated magnetization process in the low-anisotropy material. Intergrain eddy currents are responsible for the fast increase of the losses with frequency and for early permeability relaxation of the powder cores. Evidence for resonant phenomena at high frequencies and for the ensuing inadequate role of the static magnetic constitutive equation of the material in solving the magnetization dynamics via the Maxwell's diffusion equation of the electromagnetic field is provided. It is demonstrated that, by taking the Landau-Lifshitz-Gilbert equation as a constitutive relation, the excellent frequency response of the transverse anisotropy ribbons can be described by analytical method.
机译:我们已经研究了从DC到1 GHz不同处理条件下从DC至1 GHz的Finemet型合金:作为无定形前体,作为在有或没有施加饱和场的情况下纳米结晶的薄带,作为固结粉末。横向磁场退火带展示了在所有频率下最低的能量损耗和最大的Snoek产品。从低各向异性材料中的旋转主导的磁化过程可以理解这一点。晶间涡流是造成损耗随频率快速增加和压粉磁芯早期渗透率松弛的原因。提供了高频共振现象的证据,以及材料的静态磁本构方程在通过电磁场的麦克斯韦扩散方程求解磁化动力学方面的不足的证据。结果表明,以Landau-Lifshitz-Gilbert方程为本构关系,可以通过解析方法描述横向各向异性带的优良频率响应。

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