| Literature DB >> 32375311 |
Kenny L Alvarez1,2, José Manuel Martín1, Nerea Burgos1, Mihail Ipatov3, Lourdes Domínguez4, Julián González5.
Abstract
We present the evolution of magnetic anisotropy obtained from the magnetization curve of (Fe0.76Si0.09B0.10P0.05)97.5Nb2.0Cu0.5 amorphous and nanocrystalline alloy produced by a gas atomization process. The material obtained by this process is a powder exhibiting amorphous character in the as-atomized state. Heat treatment at 480 °C provokes structural relaxation, while annealing the powder at 530 °C for 30 and 60 min develops a fine nanocrystalline structure. Magnetic anisotropy distribution is explained by considering dipolar effects and the modified random anisotropy model.Entities:
Keywords: amorphous and nanocrystalline materials; anisotropy field; gas atomization; magnetic characterization; soft magnetic materials
Year: 2020 PMID: 32375311 PMCID: PMC7279281 DOI: 10.3390/nano10050884
Source DB: PubMed Journal: Nanomaterials (Basel) ISSN: 2079-4991 Impact factor: 5.076
Figure 1XRD patterns (left) and TEM images (right) of non-annealed and annealed (Fe0.76Si0.09B0.10P0.05)97.5Nb2.0Cu0.5 alloy. (a) Non-annealed powder; (b) annealed powder at 480 °C for 30 min; (c) annealed powder at 530 °C for 30 min; (d) annealed powder at 530 °C for 60 min. Figure modified from Reference [17].
Figure 2Hysteresis loop measured at room temperature of the non-annealed and annealed (Fe0.76Si0.09B0.10P0.05)97.5Nb2.0Cu0.5 alloy with particle size <20 µm. The inset shows the hysteresis loop magnified at the origin of coordinates.
Magnetic parameters of the non-annealed and annealed (Fe0.76Si0.09B0.10P0.05)97.5Nb2.0Cu0.5 alloy with particle size <20 µm.
| N° | Annealing | < | FWHM (Oe) | |||
|---|---|---|---|---|---|---|
| Temperature (°C) | Time (min) | |||||
| 1 | Non-annealed | 2.24 | 139 | 2030 | 1438 | |
| 2 | 480 | 30 | 0.94 | 146 | 2230 | 1241 |
| 3 | 530 | 30 | 0.69 | 144 | 2410 | 1185 |
| 4 | 530 | 60 | 0.81 | 145 | 2380 | 1200 |
Figure 3Anisotropy field distribution of the non-annealed and annealed (Fe0.76Si0.09B0.10P0.05)97.5Nb2.0Cu0.5 alloy with particle size <20 µm, calculated from the approximation to the saturation in the hysteresis loops in Figure 2.