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- W2088786410 abstract "The magnetic properties and microstructure of Sm2 (Fe0.95Mn0.05)17Nx and Sm2 (Fe0.84Co0.11Mn0.05)17Nx powders were investigated. It was found by high-field magnetization measurement in steady fields of up to 150 kOe that the intrinsic saturation magnetizations of Sm2(Fe0.95Mn0.05)17Nx and Sm2 (Fe0.84Co0.11Mn0.05)17Nx x=3.3-5.5 were 130-160 emu/g. The theoretical (BH)max value for Sm2 (Fe0.95Mn0.05)17N3.3 is calculated to be about 60 MGOe (ρ=7.70 g/cm3, Ms=15.5kG). The anisotropy fields of Sm2(Fe0.95Mn0.05)17Nx and Sm2(Fe0.84Co0.11Mn0.05)17Nx powders were estimated to be 140-170 kOe by extrapolation of the magnetization curves. From TEM observations, it was found that the Sm2(Fe0.95Mn0.05)17N5.5 powder had a cell structure consisting of the crystals about 10 nm in diameter. It is concluded that the magnetic reversal of Sm2(Fe0.95Mn0.05)17N5.5 powder is pinning-controlled, judging from the microstructure and the relationship between the coercivity and the maximum applied field." @default.
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- W2088786410 date "1998-01-01" @default.
- W2088786410 modified "2023-10-17" @default.
- W2088786410 title "Magnetic Properties and Microstructure of Mn-Substituted Sm2 (Fe, Mn)17Nx" @default.
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- W2088786410 doi "https://doi.org/10.3379/jmsjmag.22.353" @default.
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