4.6 Article

Effect of Co Substitution and Thermo-Magnetic Treatment on the Structure and Induced Magnetic Anisotropy of Fe84.5-xCoxNb5B8.5P2 Nanocrystalline Alloys

期刊

MATERIALS
卷 14, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/ma14123433

关键词

soft magnetic materials; surface crystallization; thermo-magnetic treatment; induced magnetic anisotropy

资金

  1. National Centre for Research and Development, grant TECHMATSTRATEG [1/347200/11/NCBR/2017]

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In this study, the thermal/crystallization behavior and magnetic properties of materials with Fe84.5-xCoxNb5B8.5P2 composition were investigated in detail using various analytical techniques, with subsequent nanocrystallization processes. The results revealed the influence of Co content on alloy properties and the effects of processing in an external magnetic field on magnetic properties.
In the present work, we investigated in detail the thermal/crystallization behavior and magnetic properties of materials with Fe84.5-xCoxNb5B8.5P2 (x = 0, 5, 10, 15 and 20 at.%) composition. The amorphous ribbons were manufactured on a semi-industrial scale by the melt-spinning technique. The subsequent nanocrystallization processes were carried out under different conditions (with/without magnetic field). The comprehensive studies have been carried out using differential scanning calorimetry, X-ray diffractometry, transmission electron microscopy, hysteresis loop analyses, vibrating sample magnetometry and Mossbauer spectroscopy. Moreover, the frequency (up to 300 kHz) dependence of power losses and permeability at a magnetic induction up to 0.9 T was investigated. On the basis of some of the results obtained, we calculated the values of the activation energies and the induced magnetic anisotropies. The X-ray diffraction results confirm the surface crystallization effect previously observed for phosphorous-containing alloys. The in situ microscopic observations of crystallization describe this process in detail in accordance with the calorimetry results. Furthermore, the effect of Co content on the phase composition and the influence of annealing in an external magnetic field on magnetic properties, including the orientation of the magnetic spins, have been studied using various magnetic techniques. Finally, nanocrystalline Fe64.5Co20Nb5B8.5P2 cores were prepared after transverse thermo-magnetic heat treatment and installed in industrially available portable heating equipment.

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