INFORMAZIONI SU QUESTO ARTICOLO

Cita

1. Yu, L. Q., Liu, R. S., Dong, K. T., & Zhang, Y. P. (2012). Key techniques for ultrahigh performance sintered Nd–Fe–B magnets preparation. Transworld Research Network. Retrieved February 10, 2014, from http://www.trnres.com/ebook/uploads/yucontent/T_1343380226Yu.pdf.Search in Google Scholar

2. Gurappa, I. (2003). Corrosion characteristics of permanent magnets in acidic environments. J. Alloy. Compd., 360, 236–242.10.1016/S0925-8388(03)00359-1Search in Google Scholar

3. El-Moneim, A. A., & Gebert, A. (2003). Electrochemical characterization of galvanically coupled single phases and nanocrystalline NdFeB-based magnets in NaCl solutions. J. Appl. Electrochem., 33, 795–805.10.1023/A:1025548411091Search in Google Scholar

4. El-Moneim, A. A. (2004). Passivity and its breakdown of sintered NdFeB-based magnets in chloride containing solution. Corros. Sci., 46, 2517–2532.10.1016/j.corsci.2003.12.002Search in Google Scholar

5. Klevets, N. I. (2005). Synthesis of magnetic systems producing field with maximal scalar characteristics. J. Magn. Magn. Mater., 285, 401–409.10.1016/j.jmmm.2004.08.010Search in Google Scholar

6. Herbst, J. F., Croat, J. J., Pinkerton, F. E., & Yelon, W. B. (1984). Relationships between crystal structure and magnetic properties in Nd2Fe14B. Phys. Rev. B, 29, 4176–4178.10.1103/PhysRevB.29.4176Search in Google Scholar

7. Givord, D., Li, H. S., & Moreau, J. M. (1984). Magnetic properties and crystal structure of Nd2Fe14B. Solid State Commun., 5, 497–499.10.1016/0038-1098(84)90315-6Search in Google Scholar

8. Pinkerton, F. E., & Dunham, W. R. (1984). Mössbauer effect studies of Nd2Fe14B and related melt-spun permanent magnet alloys. Appl. Phys. Lett., 45, 1248–1250.10.1063/1.95080Search in Google Scholar

9. Jueyun, P., Zhengwen, L., Ruzhang, M., Shuming, P., & Shikuan, R. (1986). Mössbauer studies of Nd-Fe-B alloys. Acta Metall., 22, 127–132.Search in Google Scholar

10. Hua, H. C., Wang, G. Y., Xu, Q. Z., Jin, H. J., & Xu, G. Q. (1991). Study of oxidation of NdFeB permanent magnets. Phys. Status Solidi A-Appl. Mat., 125(2), 615–624. DOI: 10.1002/pssa.2211250223.10.1002/pssa.2211250223Search in Google Scholar

11. Tian, H., Li, Y., Zhu, M., Jin, H., & Jin, D. (2007). Microstructure of single stage hot deformed anisotropic Nd-Fe-B magnets. Phys. Status Solidi C, 4, 4625–4629.10.1002/pssc.200777189Search in Google Scholar

12. Sagawa, M., Fujimura, S., Togawa, N., Yamamoto, H., & Matsuura, Y. (1984). New material for permanent magnets on a base of Nd and Fe. J. Appl. Phys., 66, 2083–2087.10.1063/1.333572Search in Google Scholar

13. Camp, F. E., & Kim, A. S. (1991). Effect of microstructure on the corrosion behavior of NdFeB and NdFeCoAlB magnets. J. Appl. Phys., 70, 6348–6350. DOI: 10.1063/1.349938.10.1063/1.349938Search in Google Scholar

14. Zak, T., Talijan, N., Cocovic, V., & Grujic, A. (2008). NdFeB permanent magnets with various Nd content. Acta Phys. Pol. A, 113, 279–282.10.12693/APhysPolA.113.279Search in Google Scholar

15. Gu, B. X., Xue, D. S., Shen, B. G., Li, F. S., & Zhai, H. R. (1992). Mössbauer study of amorphous NdxFe81B19-x (0 < x ≤ 19) alloys. Hyperf. Interact., 68, 377–380.10.1007/BF02396514Search in Google Scholar

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Chemistry, Nuclear Chemistry, Physics, Astronomy and Astrophysics, other