DocumentCode :
1077203
Title :
Magnetic behavior of mechanically Milled FeNi-CoO nanocomposites
Author :
Mishra, S.R. ; Dubenko, I. ; Losby, J. ; Roy, S. ; Ali, N. ; Marasinghe, K.
Author_Institution :
Dept. of Phys., Univ. of Memphis, TN, USA
Volume :
40
Issue :
4
fYear :
2004
fDate :
7/1/2004 12:00:00 AM
Firstpage :
2716
Lastpage :
2720
Abstract :
The effects of crystallite size and ball-mill-induced defects on the magnetic properties of ferromagnetic (FM) FeNi-antiferromagnetic (AFM) CoO (Neel Temperature=290 K) nanocomposites are assessed by magnetic measurements. Asymmetric zero-field-cooled (ZFC) hysteresis loops were observed for samples milled for 30h and longer. The field-cooled (FC) hysteresis loops were asymmetric and shifted in the direction opposite to the cooling field. The enhancement of coercivity and squareness ratio (MR/MS), along with a presence of a loop shift after field cooling indicates the presence of an exchange bias effect between the FM and AFM phases of the composite. The exchange bias field extracted from the 5 K FC measurement shows continuous enhancement with milling times up to 30 hours and a reduction upon prolonged milling. The temperature dependent exchange bias field measurement shows that the exchange bias field reduces to zero at temperature T<200 KN (290 K) of CoO. Thus, in agreement with thin film systems, exchange bias properties can be obtained in FM-AFM fine powder nanocomposites upon mechanical milling. Further, the present study has the potential implication of improving magnetic properties of hard magnetic materials upon milling with antiferromagnetic materials.
Keywords :
antiferromagnetic materials; cobalt compounds; cooling; ferromagnetic materials; iron alloys; magnetic hysteresis; magnetic particles; milling; nanocomposites; nickel alloys; 108000 s; 290 K; AFM phase; CoO; FM phase; FM-AFM fine powder nanocomposites; FeNi; FeNi-CoO nanocomposites; Neel temperature; antiferromagnetic materials; antiferromagnetic nanocomposites; asymmetric hysteresis loops; ball-mill-induced defects; coercivity enhancement; crystallite size defects; exchange bias effect; exchange bias field; exchange bias properties; exchange coupling; ferromagnetic nanocomposites; field cooling; field-cooled hysteresis loops; hard magnetic materials; loop shift; magnetic behavior; magnetic properties; mechanical milling; squareness ratio; thin film systems; zero-field-cooled hysteresis loops; Antiferromagnetic materials; Cooling; Crystallization; Magnetic field measurement; Magnetic hysteresis; Magnetic materials; Magnetic properties; Milling; Nanocomposites; Temperature dependence; Exchange bias field; exchange coupling; mechanical milling; nanocomposites;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2004.830227
Filename :
1325619
Link To Document :
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