DocumentCode :
1037752
Title :
Influence of the Magnetic Anisotropy on the Magnetic Entropy Change of {\\rm Ni}_{2}{\\rm Mn}({\\rm Ga},{\\rm Bi}) Memory Shape Alloy
Author :
Leitão, José Carlos Vieira ; Rocco, Daniel Leandro ; Amaral, João Sequeira ; de Souza Reis, M. ; Amaral, Vitor Brás Sequeira ; Fernandes, Rodrigo Pacher ; Martins, Nuno V. ; Tavares, Pedro B.
Author_Institution :
CICECO & Phys. Dept., Univ. de Aveiro, Aveiro
Volume :
44
Issue :
11
fYear :
2008
Firstpage :
3036
Lastpage :
3039
Abstract :
The magnetocaloric effect (MCE) is a good chance to create a more efficient refrigeration technique, both in energy and environmental friendliness. On the search for materials with large MCE (mainly characterized by a great magnetic entropy variation) in a wide temperature range around room temperature, this work focuses on the widely studied Heusler alloy and the influence of bismuth alloying in the stoichiometry Ni2MnGa in an attempt to make the magnetic and structural transition temperatures, TC and TM, come closer, and therefore create a large MCE. In addition, we discuss the influence of alloying processes on the magnetic anisotropy. Our results have in fact increased TM and decreased TC, but Bi substitution in Ga site (from 0 up to 5%) has been insufficient to merge those two transitions. The maximum magnetic entropy change was found to be 3.8 J/kg.K for the pure sample (without Bi) and 2.2 J/kg.K for sample 4 (maximum Bi concentration).
Keywords :
alloying; bismuth alloys; entropy; ferromagnetic materials; gallium alloys; magnetic anisotropy; magnetic transition temperature; magnetocaloric effects; manganese alloys; nickel alloys; shape memory effects; stoichiometry; Heusler alloy; Ni2MnGaBi; bismuth alloying; bismuth substitution; magnetic anisotropy; magnetic entropy variation; magnetic transition temperature; magnetocaloric effect; memory shape alloy; stoichiometry; structural transition temperature; ${rm Ni}_{2}{rm MnGa}$; Heusler alloy; magnetocaloric effect; memory shape;
fLanguage :
English
Journal_Title :
Magnetics, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9464
Type :
jour
DOI :
10.1109/TMAG.2008.2002794
Filename :
4717482
Link To Document :
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