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Properties of magnetocaloric La(Fe,Co,Si)13 produced by powder metallurgy
Authors:Britt Rosendahl Hansen  L Theil Kuhn  M Lundberg  M Katter
Affiliation:a Fuel Cells and Solid State Chemistry Division, Risø National Laboratory for Sustainable Energy, Technical University of Denmark, DK-4000 Roskilde, Denmark
b Vacuumschmelze GmbH & Co. KG, Hanau, Germany
Abstract:We present a comprehensive study of the magnetocaloric materials series La(Fe1−xCox)11.9Si1.1 with 0.055<x<0.122. The ferromagnetic samples were manufactured using a novel powder metallurgy process by which industrial scale production is feasible. This new production method makes the materials more attractive as magnetic refrigerants for room temperature magnetic refrigeration. The Curie temperature of the compounds can be easily tuned by altering the Co content and all samples have little magnetic anisotropy and present a second-order magnetic transition so that thermal and magnetic hysteresis is absent. For all seven samples, we have calculated the magnetic entropy change, ΔSM, from initial curve measurements and measured the adiabatic temperature change, ΔTad, directly. In addition, for two of the samples, we determined the heat capacity as a function of applied magnetic field and the thermal conductivity. Where relevant, the results are compared with those of Gd, the benchmark material for room temperature magnetic refrigeration.
Keywords:Magnetocaloric material  Magnetic refrigeration
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