首页> 外文期刊>The Physics of Metals and Metallography >Magnetic Properties, Thermal Stability, and Structure of the Nanocrystalline Soft Magnetic (Fe_(0.7)Co_(0.3))_(88)Hf_2W_2Mo_2Zr_1B_4Cu_1 Alloy with Induced Magnetic Anisotropy
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Magnetic Properties, Thermal Stability, and Structure of the Nanocrystalline Soft Magnetic (Fe_(0.7)Co_(0.3))_(88)Hf_2W_2Mo_2Zr_1B_4Cu_1 Alloy with Induced Magnetic Anisotropy

机译:诱导磁各向异性的纳米晶软磁(Fe_(0.7)Co_(0.3))_(88)Hf_2W_2Mo_2Zr_1B_4Cu_1合金的磁性能,热稳定性和结构

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摘要

The effect of magnitude of tensile stresses (a) applied to the (Fe_(0.7)Co_(0.3))_(88)Hf_2W_2Mo_2Zr_1B_4Cu_1 alloy with refractory-metal additions during its nanocrystallization at 620℃ for 20 min on the magnetic properties, structure, and thermal stability of the alloy is studied. It has been found that, during the nanoc rystallization of the alloy under the effect of tensile stresses of 6-250 MPa, longitudinal magnetic anisotropy with an easy magnetization axis parallel to the long size of ribbon is induced in the alloy. The thermal stability of magnetic properties of the alloy under study has been shown to be determined by the thermal stability of induced magnetic anisotropy and to depend on the magnitude of tensile stresses applied during nanocrystal-lizing annealing (NA). The better thermal stability of magnetic properties has been observed for the alloy sub jected to NA at σ= 170 MPa. After annealing at 570℃ for 25 h, the magnetic properties of the alloy are unchanged.
机译:在(Fe_(0.7)Co_(0.3))_(88)Hf_2W_2Mo_2Mo_2Zr_1B_4Cu_1合金在620℃纳米结晶20分钟时施加的拉伸应力大小(a)对磁性,结构,并研究了合金的热稳定性。已经发现,在6-250MPa的拉伸应力的作用下合金的纳米晶化期间,在合金中诱发了具有易于磁化轴的平行于薄带的长尺寸的纵向磁各向异性。已经显示,所研究合金的磁性能的热稳定性取决于感应磁各向异性的热稳定性,并且取决于纳米晶化退火(NA)期间施加的拉伸应力的大小。对于在σ= 170 MPa下经受NA的合金,已观察到较好的磁性能热稳定性。在570℃退火25小时后,合金的磁性能没有变化。

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