FeCuNbSiB纳米晶合金成分及碎磁工艺对磁性能的影响

    Effects of Composition and Magnetic Fragmentation Process on Magnetic Properties of FeCuNbSiB Nanocrystalline Alloy

    • 摘要: 对Fe74Cu1Nb3Si15B7 以及Fe81Cu6Nb1Si7B5 纳米晶合金分别在570、520 ℃下进行退火热处理,然后与丙烯酸酯胶粘剂贴合制备多层导磁片复合材料,研究了不同合金成分对纳米晶导磁片磁性能的影响。结果表明,Fe74Cu1Nb3Si15B7 在100~600 mT(f 为100 kHz)时,损耗值Pcm 明显小于Fe81Cu6Nb1Si7B5 的损耗值。当频率在1.8 MHz 以上时,Fe81Cu6Nb1-Si7B5 虚部磁导率μ''反而更低,Fe81Cu6Nb1Si7B5 在高频下表现出更好的特性。在相同电流下,Fe81Cu6Nb1Si7B5 导磁片直流偏置性能相对更高。除此之外,随着碎磁次数的增加,两种合金实部磁导率μ' 降低同时随频率f 的衰减量减小;在100 kHz~30 MHz 频率范围内,两种合金虚部磁导率μ''最大值对应频率f 随碎磁次数增加均向高频偏移。

       

      Abstract: Nanocrystalline alloys Fe74Cu1Nb3Si15B7 and Fe81Cu6Nb1Si7B5 were annealed at 570 ℃and 520 ℃, respectively, then they were bonded with acrylate adhesive to prepare multilayer magnetic sheet composites.The effect of different composition on the magnetic properties of nanocrystalline magnetic sheets was studied.The results show that the loss value Pcm of Fe74Cu1Nb3Si15B7 in the range of 100-600 mT(f is 100 kHz)is significantly lower than that of Fe81Cu6Nb1Si7B5.However, when the frequency is above 1.8 MHz, Fe81Cu6Nb1Si7B5 imaginary part permeability μ''is lower, and Fe81Cu6Nb1Si7B5 exhibits better characteristics at high frequency.Under the same current, the DC-bias performance of Fe81Cu6Nb1Si7B5 is relatively higher.In addition, with the increasing times of magnetic fragmentation, both the real part permeability μ' and attenuation of the two alloys decrease with the frequency increasing.In the frequency range of 100 kHz-30 MHz, the corresponding frequency f of the maximum imaginary part permeability μ'' of the two alloys shifts to high frequency with the increase of magnetic fragmentation times.

       

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