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High-Frequency soft magnetic properties of Fe-Si-B-P-Mo-Cu amorphous and nanocrystalline alloys

机译:Fe-Si-B-P-Mo-Cu-Cu-Cu非晶和纳米晶合金的高频软磁性能

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This paper deals with formation, thermal stability and magnetic properties of Fe-Si-B-P-Mo amorphous and nanocrystalline alloys with minor Cu alloying. Amorphous melt-spun Fe84-85B8P3.5.4Mo1-2Cu0.5.1 (at%) alloy ribbons show good bending plasticity and crystallize through two stages with each onset temperature of about 673 and 813 K. Good soft magnetic properties were obtained in both amorphous and nanocrystalline (bcc-Fe + amorphous) states. The highest saturation magnetization and the lowest coercivity are similar to 1.4 T and similar to 4 A/m, respectively, for the amorphous phase and 1.8 T and 2.5 A/m, respectively, for the bcc-Fe + amorphous phases. The frequency dependence of permeability for nanocrystalline Fe84B8P3.5Si1.5Mo2Cu1 alloy remains nearly constant in a wide frequency range up to 65 kHz. Besides, the quality factor is higher over the whole frequency range up to 10 MHz for the nanocrystalline than for the amorphous alloy. These characteristics are promising for future engineering of high-frequency type soft magnetic materials.
机译:本文涉及Fe-Si-B-P-Mo非晶和纳米晶合金的形成,热稳定性和磁性,具有次要Cu合金化。非晶熔纺Fe84-85b8p3.5.4mo1-2cu0.5.1(以%)合金带显示良好的弯曲塑性,并通过两个阶段结晶,每个起始温度约为673和813k.在无定形和良好的软磁特性纳米晶(BCC-Fe +非晶态)状态。最高饱和磁化和最低矫顽力分别与非晶相和1.8吨和2.5A / m相似的1.4吨,类似于4A / m,分别用于BCC-Fe +非晶态相。纳米晶Fe84b8p3.5si1.5mO2cu1合金渗透性的频率依赖性在宽频率范围内几乎恒定,高达65 kHz。此外,对于纳米晶体的整个频率范围高于纳米晶体的质量因数比无定形合金更高。这些特性对未来的高频型软磁材料工程有前途。

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