DocumentCode :
1330766
Title :
Temperature-Dependent Magnetic Properties of Magnetically Biphase Microwires
Author :
Rodionova, Valeria ; Nikoshin, A. ; Torrejon, J. ; Badini-Confalonieri, G.A. ; Perov, Nikolai ; Vazquez, Manuel
Author_Institution :
Fac. of Phys., Lomonosov Moscow State Univ., Moscow, Russia
Volume :
47
Issue :
10
fYear :
2011
Firstpage :
3787
Lastpage :
3790
Abstract :
The magnetic behaviour of soft/hard biphase magnetic microwires has been studied as a function of temperature in the range 25°C to 900°C. The microwires consist of an ultrasoft CoFe-based vanishing magnetostriction amorphous core covered by insulating Pyrex coating prepared by quenching and drawing, plus an electroplated CoNi magnetically harder external shell. The magnetization process has been analyzed through the study of the hysteresis loops and their parameters like saturation magnetization and coercivity of the different phases, measured in a vibrating sample magnetometer. The magnetically biphase character has been first confirmed by room-temperature measurements for wires with different thickness. The observed dependence of magnetization and coercivity on temperature is correlated with the overcoming of the Curie temperature and crystallization of the amorphous soft core.
Keywords :
Curie temperature; amorphous magnetic materials; cobalt alloys; coercive force; crystallisation; drawing (mechanical); electroplated coatings; iron alloys; magnetic hysteresis; magnetostriction; nickel alloys; quenching (thermal); CoFe-CoNi; Curie temperature; coercivity; crystallization; drawing; electroplated magnetically harder external shell; hysteresis loops; insulating Pyrex coating; magnetostriction amorphous core; quenching; saturation magnetization; soft-hard biphase magnetic microwires; temperature 25 degC to 900 degC; temperature 293 K to 298 K; temperature-dependent magnetic properties; vibrating sample magnetometer; Amorphous magnetic materials; Magnetic cores; Magnetic hysteresis; Perpendicular magnetic anisotropy; Saturation magnetization; Temperature measurement; Ferromagnetic biphase microwire; high-temperature magnetic properties; magnetization process;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2011.2158811
Filename :
6027830
Link To Document :
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