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The magnetic entropy change in La0.8Ce0.2Fe 11.4Si1.6Bx compounds prepared by copper-mold casting
Journal article   Peer reviewed

The magnetic entropy change in La0.8Ce0.2Fe 11.4Si1.6Bx compounds prepared by copper-mold casting

Zhiping Lin, Shandong Li, Ming Liu, Su-Yueh Tsai, Jenq-Gong Duh, Meimei Liu and Feng Xu
Journal of Magnetism and Magnetic Materials, Vol.323(13), pp.1741-1744
07/2011

Abstract

Copper-mold casting Magnetic hysteresis Magnetocaloric effect Thermal lag
The magnetocaloric effect (MCE) of La 0.8 Ce 0.2 Fe 11.4 Si 1.6 B x (x=0.00.5) compounds, prepared by a copper-mold casting (CMC) method, has been investigated. Comparing with the conventional arc-melting (CAM) method, the relatively homogenous composition and microstructure were achieved in the precursor alloys prepared by the CMC method. As a result, the annealing time is dramatically shortened from several weeks for CAM alloys to 2 h for CMC alloys, suggesting that CMC method is a time-saving and energy-saving method for fabrication of MCE alloys. On the other hand, it is revealed that B addition gives rise to an enhancement of Curie temperature (T C ), a reduction of thermal lag and magnetic hysteresis and a broadening of working temperature span as well. Although the peak value of magnetic entropy change decreases with B content, various B-contained compounds hold close refrigerant capacities. Comprehensively considering magnetocaloric properties of the B-contained La 0.8 Ce 0.2 Fe 11.4 Si 1.6 B x compounds, it can be concluded that the B-contained compounds prepared by CMC method are promising candidates of magnetocaloric materials in practical application. © 2011 Elsevier B.V. All rights reserved.

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