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Tayloring the hysteresis loop of soft magnetic nanocrystalline alloys by magnetic and tensile stress annealing

机译:通过磁和拉应力退火泰勒软磁纳米晶合金的磁滞回线

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摘要

The eddy current limits for metallic cores should be shifted above 1 MHz in order to keep the operating frequencies about 100 to 500 kHz for inductors and transformers. The high operating frequency permits the mass and volume reducing which is a major demand nowadays in aerospace and automobile applications. Specially, in the context of aerospace applications, a magnetic material that can maintain a lower core loss over the applicable temperature range can provide a basis for nosing out the competition with ferrites (limited temperature range) and with crystalline permalloy of 17 μm thick (limited plastic yields strength). It has been recognized that for low loss and wide applicable temperature demand magnetic field and stress annealed Finemet represent an advanced material permitting new solutions for high frequency magnetics. Compact toroids without gap can be prepared with high quality factor and high current inductors. This work presents some new results concerning the magnetic field and stress annealing.
机译:金属芯的涡流极限应移至1 MHz以上,以使电感器和变压器的工作频率保持在100至500 kHz左右。高工作频率允许减小质量和体积,这是当今在航空航天和汽车应用中的主要需求。特别是,在航空航天应用中,可以在适用温度范围内保持较低铁损的磁性材料可以为消除与铁氧体(温度范围有限)和17微米厚的结晶坡莫合金(有限的)之间的竞争奠定基础。塑性屈服强度)。已经认识到,对于低损耗和广泛适用的温度要求,磁场和应力退火的Finemet代表了一种先进的材料,可以为高频磁学提供新的解决方案。可以使用高品质因数和高电流电感器来制备无间隙的紧凑型环形线圈。这项工作提出了一些有关磁场和应力退火的新结果。

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  • 来源
    《IEEE Magnetics Conference》|2015年|1-1|共1页
  • 会议地点 Beijing(CN)
  • 作者

    Varga, L.K.;

  • 作者单位

    Metall. & Magn. Wigner Res. Center for Phys. Budapest Hungary;

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