Abstract
The high-temperature oxidation resistance and magnetic properties of Si-doped Sm 2Co 17-type magnets at 500 °C were systematically investigated. The Sm(Co 0.76, Fe 0.1, Cu 0.1, Zr 0.04) 7Si x (x=00.6) magnets were prepared by the conventional powder metallurgical technique. It is found that the addition of silicon in the Sm 2Co 17-type magnet can remarkably improve its oxidation resistance. Moreover, a small amount of silicon addition can also increase its high-temperature intrinsic coercivity. A maximum intrinsic coercivity of 6.7 kOe at 500 °C was obtained for the Sm 2Co 17-type magnet with Si content x=0.4, whose high-temperature maximum energy product loss was about 2.5 times smaller than pure Sm 2Co 17-type magnet after oxidation at 500 °C for 100 h, indicating the enhanced oxidation resistance. Its corresponding Curie temperature and saturation magnetization are about 723.9 °C and 7.4 kG, respectively.
| Original language | English |
|---|---|
| Pages (from-to) | 2310-2314 |
| Number of pages | 5 |
| Journal | Journal of Magnetism and Magnetic Materials |
| Volume | 324 |
| Issue number | 14 |
| DOIs | |
| State | Published - Jul 2012 |
Keywords
- High-temperature magnetic property
- Oxidation resistance
- Silicon addition
- Sm Co -type magnet
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