Nanotechnology for Obtaining Soft Magnetic Materials
Tsepelev V. S.1, Starodubtsev Yu. N.1, Tsepeleva N. P.1, Wu K. M.2,
Wang R. W.2
1. Boris Yeltsin Ural Federal University, Mira str. 19, Yekaterinburg, 620002, Russia.
2. Wuhan University of Science and Technology, Wuhan, China.
2. Wuhan University of Science and Technology, Wuhan, China.
Abstract: Taking into account the concept of the quasi-chemical model of the liquid micro-non-uniform composition and the research made on the physical properties of the Fe-based melts being crystallized, the technology of the melt time-temperature treatment has been developed. Amorphous ribbons produced using this technology require optimal annealing temperatures to be specifically selected. The results of studying nanocrystalline magnetic core and their structure in the course of annealing at temperatures below and above the optimal ones are presented.
Keywords: Quasi-chemical model, time-temperature treatment, nanocrystalline magnetic core.
Cite: Tsepelev V. S., Starodubtsev Yu. N., Tsepeleva N. P., Wu K. M., Wang R. W., "Nanotechnology for Obtaining Soft Magnetic Materials," International Journal of Materials Science and Engineering, Vol. 6, No. 3, pp. 86-92, September 2018. doi: 10.17706/ijmse.2018.6.3.86-92
Keywords: Quasi-chemical model, time-temperature treatment, nanocrystalline magnetic core.
Cite: Tsepelev V. S., Starodubtsev Yu. N., Tsepeleva N. P., Wu K. M., Wang R. W., "Nanotechnology for Obtaining Soft Magnetic Materials," International Journal of Materials Science and Engineering, Vol. 6, No. 3, pp. 86-92, September 2018. doi: 10.17706/ijmse.2018.6.3.86-92
General Information
ISSN: 2315-4527 (Print)
Abbreviated Title: Int. J. Mater. Sci. Eng.
Editor-in-Chief: Prof. Emeritus Dato' Dr. Muhammad Yahaya
DOI: 10.17706/ijmse
Abstracting/ Indexing: Ulrich's Periodicals Directory, Google Scholar, Crossref
E-mail: ijmse@iap.org
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