Magnetic properties of the Y2 (FexCo1-x)17 compounds
- 作者: Sinkevich A.I.1, Lyakhova M.B.1, Karpenkov A.Y.1, Semenova E.M.1, Karpenkov D.Y.2, Pastushenkov Y.G.1
-
隶属关系:
- Tver State University
- National University of Science and Technology MISIS
- 期: 卷 88, 编号 5 (2024)
- 页面: 829-834
- 栏目: Physics of ferroelectrics
- URL: https://jdigitaldiagnostics.com/0367-6765/article/view/654693
- DOI: https://doi.org/10.31857/S0367676524050228
- EDN: https://elibrary.ru/QDPHHG
- ID: 654693
如何引用文章
详细
The results of magnetization curves analysis of Y2(FexCo1−x)17 compounds, measured in 300—923 K temperature interval along easy and hard magnetization direction, were represented. Magnetocrystalline anisotropy constants K1,2 of the samples were calculated. Temperature and compositional dependence of anisotropy constants K1,2 and saturation magnetization Ms were discussed. There is an increase of first anisotropy constant K1 value with the increase of relative samples iron concentration with maximum value of 5.1∙105 J·m-3 in x = 0.29 point, correspond to the middle of the easy-axis interval.
作者简介
A. Sinkevich
Tver State University
编辑信件的主要联系方式.
Email: Sinkevich.AI@tversu.ru
俄罗斯联邦, Tver
M. Lyakhova
Tver State University
Email: Sinkevich.AI@tversu.ru
俄罗斯联邦, Tver
A. Karpenkov
Tver State University
Email: Sinkevich.AI@tversu.ru
俄罗斯联邦, Tver
E. Semenova
Tver State University
Email: Sinkevich.AI@tversu.ru
俄罗斯联邦, Tver
D. Karpenkov
National University of Science and Technology MISIS
Email: Sinkevich.AI@tversu.ru
俄罗斯联邦, Moscow
Yu. Pastushenkov
Tver State University
Email: Sinkevich.AI@tversu.ru
俄罗斯联邦, Tver
参考
- Buschow K.H.J. // Rep. Progr. Phys. 1977. V. 40. No. 10. P. 1179.
- Coey J.M.D. // Engineering. 2020. V. 6. No. 2. P. 119.
- Coey J.M.D. // IEEE Trans. Magn. 2011. V. 47. No. 12. P. 4671.
- Лукин А.А., Кольчугина Н.Б. // Изв. РАН. Сер. физ. 2019. Т. 83. № 7. С. 879. Lukin A.A., Kolchugina N.B. // Bull. Russ. Acad. Sci. Phys. 2019. V. 83. No. 7. P. 798.
- Андреенко А.С., Никитин С.А., Спичкин Ю.И., Тишин А.М. // ФТТ. 1991. Т. 33. № 8. С. 2463.
- Givord D., Lemaire R. // IEEE Trans. Magn. 1974. V. 10. No. 2. P. 109.
- Brennan S., Skomski R., Cugat O. et al. // J. Magn. Magn. Mater. 1995. V. 140. P. 971.
- Miller A.E., D’Silva T., Shanley J. // J. Appl. Phys. 1977. V. 48. P. 3466.
- Perkins R.S., Nagel H. // Physica B. 1975. V. 80. P. 143.
- Callen E. // Physica B. 1982. V. 114. No. 1. P. 71.
- Zhang P., Wang Y., Yang W. et al. // AIP Advances. 2023. V. 13. No. 2. Art. No. 025251.
- Semenova E.M., Lyakhova M.B., Sinkevich A.I. et al. // IEEE Magn. Lett. 2020. V. 11. Art. No. 2501005.
- Chen H., Ho W.W., Sankar S.G., Wallace W.E. // J. Magn. Magn. Mater. 1989. V. 78. No. 2. P. 203.
- Ray A.E., Strnat K.J. // IEEE Trans. Magn. 1972. V. MAG-8. P. 516.
- Shanley C.W., Harmer R.S. // AIP Conf. Proc. 1974. V. 18. P. 1217.
- Katayama T., Shibata T. // J. Cryst. Growth. 1974. V. 24. P. 396.
- Kardellass S., Servant C., Selhaoui N. et al. // J. Alloys Compounds. 2014. V. 583. P. 598.
- Lyakhova M.B., Zhdanova O.V. // Met. Sci. Heat Treat. 2017. V. 58. No. 9. P. 587.
- Inomata K. // Japan. J. Appl. Phys. 1976. V. 15. No. 5. P. 821.
补充文件
