Production and Characterization of Nanostructured Powders of Nd2Fe14B and Fe90Al10 by Mechanical Alloying
Abstract
:1. Introduction
2. Results
2.1. Fe90Al10 System
2.2. Nd2Fe14B System
2.3. Nd2Fe14B/Fe90Al10 Nanocomposite System
3. Experimental Process
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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Time | Density (g/cm3) ±0.04 | Volume (Å3) ±0.04 | a (Å) ±0.04 | Φper (nm) ±0.5 | Φpar (nm) ±0.5 |
---|---|---|---|---|---|
0 h | 6.96 | 24.041 | 2.88 | 28.8 | 14.4 |
24 h | 6.99 | 23.937 | 2.88 | 21.7 | 18.1 |
48 h | 6.97 | 23.990 | 2.88 | 24.8 | 12.4 |
Time | Component | δ (mm/s) ±0.005 | Г (mm/s) ±0.005 | Qs (mm/s) ±0.005 | HF (kOe) ±0.4 | Spectral Area % |
---|---|---|---|---|---|---|
0 h | HMDF | 0.033 | −0.026 | 318.2 | ||
48 h | HMDF Doublet | 0.038 0.383 | 0.535 | 0.323 0.888 | 200.1 | 62.5 37.5 |
Milling Time | Hc (Oe) ±0.4 | Mr (emu/g) ±0.4 | Ms (emu/g) ±0.4 |
---|---|---|---|
0 h | 67.5 | 6.8 | 225.2 |
24 h | 33.3 | 2.3 | 173.7 |
48 h | 26.6 | 1.7 | 137.9 |
Milling Time | Density (g/cm3) ±0.04 | Volume (Å3) ±0.04 | a (Å) ±0.04 | c (Å) ±0.04 | Φper (nm) ±0.5 | Φpar (nm) ±0.5 |
---|---|---|---|---|---|---|
0 h | 7.58 | 947.26 | 8.80 | 12.20 | 54.7 | 34.4 |
24 h | 8.25 | 931.63 | 8.75 | 12.14 | 8.0 | 15.2 |
48 h | 9.09 | 899.08 | 8.63 | 12.04 | 14.8 | 22.0 |
Milling Time | Component | δ (mm/s) ±0.005 | Г (mm/s) ±0.005 | Qs (mm/s) ±0.005 | HF (kOe) ±0.4 | Spectral Area (%) |
---|---|---|---|---|---|---|
48 h | J1 | −0.074 | 0.165 | 0.171 | 282.3 | 17.4 |
J2 | −0.017 | 0.231 | 0.112 | 329.1 | 19.6 | |
K1 | −0.054 | 0.174 | 0.097 | 267.1 | 10.8 | |
K2 | 0.026 | 0.234 | 0.263 | 346.4 | 17.0 | |
C | −0.006 | 0.239 | 0.114 | 249.2 | 10.5 | |
E | −0.097 | 0.181 | 0.114 | 300.4 | 24.5 |
Time | Hc (Oe) ±0.4 | Mr (emu/g) ±0.4 | Ms (emu/g) ±0.4 |
---|---|---|---|
0 h | 6883.4 | 84.5 | 118.4 |
24 h | 1979.2 | 52.7 | 129.3 |
48 h | 2350.9 | 48.3 | 115.9 |
Temperature (°C) | Phase | Density g/cm3 ±0.04 | Volume (Å3) ±0.04 | a (Å) ±0.04 | Φper (nm) ±0.5 | Φpar (nm) ±0.5 |
---|---|---|---|---|---|---|
300 | Fe90Al10 | 5.23 | 23.39 | 2.85 | 47.2 | 20.0 |
400 | Fe90Al10 | 7.04 | 29.75 | 2.87 | 62.6 | 34.1 |
500 | Fe90Al10 | 7.07 | 23.67 | 2.87 | 43.9 | 43.2 |
Component | δ (mm/s) ±0.005 | Г (mm/s) ±0.005 | Qs (mm/s) ±0.005 | HF (kOe) ±0.4 | Spectral Area(%) |
---|---|---|---|---|---|
Sextet | 0.033 | 0.262 | −0.082 | 331.3 | 96 |
Singlet | −0.057 | 0.182 | 0.000 | 4 |
Temperature (°C) | Hc (Oe) ±0.4 | Mr (emu/g) ±0.4 | Ms (emu/g) ±0.4 |
---|---|---|---|
300 | 171.2 | 16.5 | 173.2 |
400 | 149.1 | 12.0 | 162.9 |
500 | 132.2 | 9.9 | 138.6 |
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Gómez Rodríguez, A.J.; Oyola Lozano, D.; Bustos Rodríguez, H.; Rojas Martínez, Y.; Pérez Alcázar, G.A.; Zamora Alfonso, L.E.; Trujillo Hernandez, J.S. Production and Characterization of Nanostructured Powders of Nd2Fe14B and Fe90Al10 by Mechanical Alloying. Molecules 2022, 27, 7190. https://doi.org/10.3390/molecules27217190
Gómez Rodríguez AJ, Oyola Lozano D, Bustos Rodríguez H, Rojas Martínez Y, Pérez Alcázar GA, Zamora Alfonso LE, Trujillo Hernandez JS. Production and Characterization of Nanostructured Powders of Nd2Fe14B and Fe90Al10 by Mechanical Alloying. Molecules. 2022; 27(21):7190. https://doi.org/10.3390/molecules27217190
Chicago/Turabian StyleGómez Rodríguez, Alvaro Javier, Dagoberto Oyola Lozano, Humberto Bustos Rodríguez, Yebrail Rojas Martínez, German Antonio Pérez Alcázar, Ligia Edith Zamora Alfonso, and Juan Sebastian Trujillo Hernandez. 2022. "Production and Characterization of Nanostructured Powders of Nd2Fe14B and Fe90Al10 by Mechanical Alloying" Molecules 27, no. 21: 7190. https://doi.org/10.3390/molecules27217190
APA StyleGómez Rodríguez, A. J., Oyola Lozano, D., Bustos Rodríguez, H., Rojas Martínez, Y., Pérez Alcázar, G. A., Zamora Alfonso, L. E., & Trujillo Hernandez, J. S. (2022). Production and Characterization of Nanostructured Powders of Nd2Fe14B and Fe90Al10 by Mechanical Alloying. Molecules, 27(21), 7190. https://doi.org/10.3390/molecules27217190