Thermomagnetic and magnetocaloric properties of metamagnetic Ni-Mn-In-Co Heusler alloy in magnetic fields up to 140 kOe
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Kamantsev, Alexander; Koledov, Victor V.; Dilmieva, Elvina; Mashirov, Alexey V.; Shavrov, Vladimir G.; Cwik, Jacek; Tereshina, Irina Semenovna; Khovaylo, Victor; Lyange, Maria V.; González Legarreta, Lorena
Fecha
2014-07Derechos
Atribución 3.0 España
Publicado en
The European Physical Journal Conferences, 2014, 75, 04008
7th Joint European Magnetic Symposia: JEMS, Rhodes, Greece, 2013
Editorial
EDP Sciences
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Resumen/Abstract
High cooling power of magnetocaloric refrigeration can be achieved only at large amounts of heat, which can be transferred in one cycle from cold end hot end at quasi-isothermal conditions. The simple and robust experimental method of direct measuring of the transferred heat of materials with magnetocaloric effect (MCE) in thermal contact with massive copper block with definite heat capacity in quasi-isothermal regime was proposed. The vacuum calorimeter for the specific transferred heat ∆Q and adiabatic temperature change ∆T measurements of MCE materials in the fields of Bitter coil magnet up to H = 140 kOe was designed and tested on samples of Ni43Mn37.9In12.1Co7 Heusler alloy with inverse MCE in the vicinity of meta-magnetostructural phase transition (PT). It was found, that the magnetic field H = 80 kOe produces complete PT from martensite to austenite with ∆Q = - 1600 J/kg at initial temperature 273 K.
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